Jianhua Zou | nanomedicine | Young Scientist Award

Dr. Jianhua Zou | nanomedicine | Young Scientist Award

Senior Research Fellow at National University of Singapore , Singapore.

🔬 Short Biography 🌿💊📚

Dr. Jianhua Zou (👨‍🔬), born in 1993, is a distinguished Chinese scientist currently serving as a Senior Research Fellow at the Department of Diagnostic Radiology, Yong Loo Lin School of Medicine, National University of Singapore 🇸🇬. His research blends nanotechnology, phototherapy, and immunotherapy to revolutionize cancer treatment 🎯. With a Ph.D. in Chemistry from Nanjing Tech University and postdoctoral training at the NIH 🇺🇸, Dr. Zou has authored over 85 publications 📚 and garnered more than 5000 citations. He actively contributes to academic communities as an editorial board member and reviewer for top-tier journals such as Advanced Materials and Angewandte Chemie. Notable for his innovative research on molecular imaging and photodynamic therapy, he plays a key role in multiple national-level research projects. Dr. Zou’s interdisciplinary expertise and international collaborations mark him as a rising leader in biomedical innovation 🚀.

PROFILE 

GOOGLE SCHOLAR 

🔍 Summary of Suitability:

Dr. Zou, born in 1993, is a prolific scientist in the field of nanomedicine and cancer theranostics. As a Senior Research Fellow at the National University of Singapore, he has already amassed an impressive research portfolio with 85+ publications, 5000+ citations, and an H-index of 37, which is a remarkable achievement for a young researcher under 35. He has consistently demonstrated leadership by securing competitive grants as a Principal Investigator, contributing to high-impact projects, and shaping the research landscape through editorial and peer review roles. His collaborations with top-tier institutions like the NIH (USA) and his active role in cutting-edge research further strengthen his candidacy 🌍.

🔹 Education & Experience 

Dr. Jianhua Zou earned his B.Sc. in Chemistry from Suzhou Institute of Technology (2011–2015) 🧪 and completed his Ph.D. at Nanjing Tech University (2015–2020) under Prof. Wei Huang, a renowned academician 👨‍🏫. He later advanced his research career with a prestigious fellowship at the National Institutes of Health (NIH), USA, first as a visiting scholar (2018–2020) and then as a postdoctoral fellow (2020–2021) 🇺🇸. Since 2021, he has been affiliated with the National University of Singapore, initially as a Research Fellow and currently as a Senior Research Fellow 👨‍🔬. Throughout his academic journey, he has worked under top-tier mentors including Prof. Xiaoyuan Chen and Dr. Richard Leapman. Dr. Zou’s experience spans interdisciplinary research, bridging chemistry, nanotechnology, immunology, and diagnostic imaging. His progressive academic and professional milestones demonstrate a commitment to innovation, scientific rigor, and translational medical impact 🌐.

🔹 Professional Development 

Dr. Jianhua Zou’s professional development is deeply rooted in multidisciplinary and translational research 🌍. From his early training in coordination chemistry to pioneering nanomaterials for photodynamic therapy, his evolution reflects a strategic fusion of basic science and clinical application 🔗. At the NIH, he honed his skills in biomedical imaging and collaborated on projects that interfaced with advanced instrumentation and immunological diagnostics. His current role at NUS allows him to lead novel research projects, supervise students, and contribute to high-impact collaborations 🌟. As a guest editor and journal reviewer, he remains actively involved in shaping the future of biomedical sciences. He has also been recognized for delivering invited talks internationally, including a presentation at the NIH’s NIBIB Board of Scientific Counselors meeting 🗣️. His ongoing development is bolstered by competitive grants, strategic international partnerships, and an expanding portfolio of translational innovations 🧬.

🏅 Awards and Recognitions

  • 🧪 Open Fund Young Individual Research Grant (OFYIRG) – Principal Investigator, Singapore (2022–2024)

  • 💉 Singapore NRF Competitive Research Program – Collaborator on individualized cancer vaccines (2023–2028)

  • 🧬 OFIRG – Co-investigator on nanovaccine for personalized immunotherapy (2023–2028)

  • 💊 OFIRG – Co-investigator on mRNA vaccine for bladder cancer (2024–2029)

  • 🌱 OFIRG – Nanodrug for gut microbiota modulation in colorectal cancer (2024–2029)

  • ❤️ OFIRG – Nanogel delivery system for atherosclerosis (2025–2030)

  • 🎤 Invited Speaker – NIH NIBIB Board of Scientific Counselors, USA (2020)

  • 📝 Distinguished Essay Award – Jingbo Co Pte Ltd. (2020)

  • 🧑‍⚖️ Editorial Roles – Guest Editor (Theranostics), Board Member (Chinese Chemical Letters)

  • 📚 Peer ReviewerAdvanced Materials, AFM, Angew. Chem., Nano-Micro Letters, etc.

🔬 Research Focus

Dr. Jianhua Zou’s research centers on nanomedicine, molecular imaging, and cancer theranostics 🧪. His primary focus lies in the design of smart nanomaterials for photo-immunotherapy, targeted drug delivery, and diagnostic imaging 📸. Specifically, he explores Type I photosensitizers, nanoplatforms responsive to tumor microenvironments, and dual-responsive nanosystems for precise therapeutic interventions 🎯. He integrates chemistry, photophysics, and immunology to develop next-generation nanovaccines, photodynamic agents, and imaging tools capable of tracking immune responses and disease progression. His interdisciplinary work targets major health challenges such as atherosclerosis, colorectal cancer, bladder cancer, and breast cancer 🧠💊. With a strong commitment to personalized medicine and translational outcomes, Dr. Zou’s research transforms lab discoveries into clinically relevant technologies 🚀. His contributions span from fundamental innovation in nanoparticle design to applied strategies for immunotherapy amplification and disease monitoring — making him a leading figure in cancer nanotheranostics 🔬.

Publications & Citations 📚

  1. 📘 Exploring hetero-catalytic proficiencies of pristine and carbon-doped titania nanocatalysts2025 | Cited by: 4 📊

  2. 🔋 Single-step wet chemical synthesis of Co-doped Bi₂O₃ photoanode for DSSCs2024 | Cited by: 9 📈

  3. 🧪 Robust Carborane-Based MOFs for Hexane Separation2023 | Cited by: 46 📚

  4. 🌀 Pore Aperture Control for Size-Exclusion Hydrocarbon Separations2023 | Cited by: 48 🏆

  5. ☀️ Visible-Light-Driven Carbon-Doped TiO₂ Nanocatalysts2022 | Cited by: 53 🌟

  6. 🧬 Aryl bis-thioureas as Alzheimer’s drug candidates2021 | Cited by: 11 💊

  7. 🧪 Click-derived 1,2,3-triazole as selective Hg²⁺ detector2021 | Cited by: 4 🔍

  8. 🧫 CuO/polyaniline composite for electrochemical detection2021 | Cited by: 4 🧲

  9. 🧾 NiO nanostructures and glucose sensing2021 | Cited by: –

  10. 🔋 Co₃O₄-MWCNT composites for electrochemical studies2021 | Cited by: –

  11. 🧪 Leaf-like NiO with MWCNTs for uric acid detection2021 | Cited by: 2 🧪

  12. 🦠 Graphene materials vs. COVID-19: Challenges & opportunities2021 | Cited by: 55 🧻

  13. 🔥 Co-Mo oxide nanomaterials for C–H bond activation2021 | Cited by: 10 ⚡

  14. 🧪 Ferrocene-based thioureas: Synthesis & antioxidant studies2019 | Cited by: 11 🧬

  15. 🧬 Ferrocenyl thioureas as kinase inhibitors & cytotoxic agents2019 | Cited by: 5 💉

  16. 🧲 Ferrocene-Cu(I) complex: DNA interaction & DFT study2019 | Cited by: 17 🧠

  17. 🧬 Ferrocene thioureas as non-covalent DNA binders2018 | Cited by: – 🧬

🔍 Conclusion:

Dr. Jianhua Zou exemplifies the qualities of a Young Scientist Award recipient: innovation, leadership, impactful contributions, and global recognition at an early career stage. His research not only advances science but also holds tremendous potential for real-world clinical applications in cancer therapy and beyond 🔬. Recognizing Dr. Zou with this award would not only honor his past achievements but also encourage continued breakthroughs in biomedical sciences and translational nanotechnology 🚀.

Bhajan Lal | Inorganic Materials | Best Researcher Award

Assoc. Prof. Dr. Bhajan Lal | Inorganic Materials | Best Researcher Award

Associate Professor at Shah Abdul Latif University Khairpur , Pakistan.

🔬 Short Biography 🌿💊📚

Dr. Bhajan Lal 🎓 is an accomplished Associate Professor at Shah Abdul Latif University, Khairpur, Pakistan. With a Ph.D. in Inorganic Chemistry from Quaid-i-Azam University 🧪, Islamabad, and post-doctoral research at Northwestern University 🇺🇸, his academic journey reflects dedication and excellence. He also undertook a prestigious research visit at the University of Sydney, Australia 🇦🇺. Over the years, Dr. Lal has held various faculty positions, including Assistant Professorships at SALU and Sukkur IBA, contributing richly to both teaching and research 👨‍🏫. A leading member of several academic initiatives, he currently serves as Faculty Advisor to the ACS-SALU International Student Chapter 🌍. With numerous high-impact publications and active participation in international conferences, Dr. Lal’s contributions to chemistry are both scholarly and globally recognized 🌐. His work emphasizes sustainability and innovation, particularly in nanomaterials and photocatalysis 🌱. He continues to mentor students and lead projects with a focus on environmental and analytical chemistry 🔍.

PROFILE 

GOOGLE SCHOLAR 

ORCID 

🔍 Summary of Suitability:

Dr. Bhajan Lal stands out as a pioneering researcher in inorganic, analytical, and environmental chemistry, with a profound impact in nanocatalysis, photocatalysis, and metal-organic frameworks (MOFs). His exceptional research output, comprising over 50 peer-reviewed publications in high-impact journals like Angewandte Chemie, Journal of the American Chemical Society, and ACS Omega, illustrates both quality and relevance. With 1550+ citations, his scientific contributions are widely recognized and influential in the global research community 🌍.

🔹 Education & Experience 

Dr. Bhajan Lal’s academic path began with a B.Sc. from SALU Khairpur 🧪, followed by an M.Sc., M.Phil., and Ph.D. in Inorganic Chemistry from Quaid-i-Azam University, Islamabad 📘. He completed a postdoctoral fellowship at Northwestern University, USA 🇺🇸, and a research stint at the University of Sydney 🇦🇺. Professionally, he began as an Assistant Professor at SALU (2013), transitioned to Sukkur IBA (2015–2017), and returned to SALU in 2017. Since 2019, he has served as Associate Professor 🏫. In addition to teaching, he has taken up advisory roles, such as Faculty Advisor to the ACS-SALU Chapter and technical expert for SHEC initiatives 🧑‍🔬. His extensive experience blends pedagogy, innovation, and research leadership 🌟. Dr. Lal’s role in national and international research events and programs showcases his global academic engagement 🌍. He is known for mentoring graduate students and managing multi-year, interdisciplinary research grants 🎯.

🔹 Professional Development 

Dr. Bhajan Lal is a proactive scholar committed to continuous professional growth and academic leadership 🌟. He has attended numerous national and international conferences in the USA 🇺🇸, Singapore 🇸🇬, Korea 🇰🇷, and the UAE 🇦🇪, presenting cutting-edge research in chemistry. He has received multiple ACS Community Engagement and Professional Meeting Grants 💼 to support his academic outreach and networking. As Faculty Advisor to the ACS-SALU International Chapter 🌍, he has led initiatives that integrate students into the global scientific community. Dr. Lal’s development portfolio includes research grants from the Higher Education Commission and the Sindh Research Support Program 💰, reflecting his project leadership and innovation. Additionally, his invited talks at prestigious platforms demonstrate his growing influence in applied and sustainable chemistry 🌿. These engagements, combined with his postdoctoral work at Northwestern University, enrich his professional skills and position him as a dynamic leader in chemical education and research development 🔬.

🏅 Awards and Recognitions

  • 🧪 Postdoctoral Fellowship, Northwestern University (HEC Pakistan)

  • 🌏 IRSIP Fellowship, University of Sydney, Australia (HEC)

  • 💼 ACS Community Engagement Grants (2024–2025)

  • 🧵 Sindh Research Support Grant – Nanozyme-based water treatment project

  • 🧳 Travel Grants by HEC & IBA for conferences in USA, Singapore, Korea, and UAE

  • 🎤 Invited Speaker at international conferences including ChemCon2023, ICSDN-23

  • 🏅 Platinum Medallion Publications in Angewandte Chemie and JACS

  • 📈 Citations: 1550+ scholarly citations on Google Scholar

  • 📚 Faculty Advisor, ACS-SALU International Student Chapter

  • 👨‍🏫 Focal Person, PM Youth Laptop Scheme & SLSP (SHEC)

🔬 Research Focus

Dr. Bhajan Lal’s research focuses on inorganic, analytical, and environmental chemistry, with specialized interest in nanocatalysis, photocatalysis, and metal-organic frameworks (MOFs) 🔬. His work in synthesizing and characterizing functional materials targets sustainable applications like pollutant degradation, microbial control, and clean energy 🌱. He explores size-exclusion separation methods and nanozyme-based floodwater remediation, contributing to green chemistry and public health 🧪. His published studies in journals such as Angewandte Chemie and JACS illustrate his expertise in hydrocarbon separation and advanced material design 🚀. Dr. Lal also investigates visible-light-driven TiO₂-based nanocatalysts, enzyme-mimicking nanomaterials, and electrochemical sensors ⚡. By combining experimental techniques with computational modeling, his research enhances understanding of functional nanostructures and catalysis mechanisms 🔍. Through collaborative projects and supervision of graduate research, he nurtures interdisciplinary innovation in material science, environmental solutions, and medicinal chemistry 🧬. His impactful work pushes the boundaries of next-generation chemical technologies and environmental sustainability 🌍.

Publications & Citations 📚

  1. 📘 Exploring hetero-catalytic proficiencies of pristine and carbon-doped titania nanocatalysts2025 | Cited by: 4 📊

  2. 🔋 Single-step wet chemical synthesis of Co-doped Bi₂O₃ photoanode for DSSCs2024 | Cited by: 9 📈

  3. 🧪 Robust Carborane-Based MOFs for Hexane Separation2023 | Cited by: 46 📚

  4. 🌀 Pore Aperture Control for Size-Exclusion Hydrocarbon Separations2023 | Cited by: 48 🏆

  5. ☀️ Visible-Light-Driven Carbon-Doped TiO₂ Nanocatalysts2022 | Cited by: 53 🌟

  6. 🧬 Aryl bis-thioureas as Alzheimer’s drug candidates2021 | Cited by: 11 💊

  7. 🧪 Click-derived 1,2,3-triazole as selective Hg²⁺ detector2021 | Cited by: 4 🔍

  8. 🧫 CuO/polyaniline composite for electrochemical detection2021 | Cited by: 4 🧲

  9. 🧾 NiO nanostructures and glucose sensing2021 | Cited by: –

  10. 🔋 Co₃O₄-MWCNT composites for electrochemical studies2021 | Cited by: –

  11. 🧪 Leaf-like NiO with MWCNTs for uric acid detection2021 | Cited by: 2 🧪

  12. 🦠 Graphene materials vs. COVID-19: Challenges & opportunities2021 | Cited by: 55 🧻

  13. 🔥 Co-Mo oxide nanomaterials for C–H bond activation2021 | Cited by: 10 ⚡

  14. 🧪 Ferrocene-based thioureas: Synthesis & antioxidant studies2019 | Cited by: 11 🧬

  15. 🧬 Ferrocenyl thioureas as kinase inhibitors & cytotoxic agents2019 | Cited by: 5 💉

  16. 🧲 Ferrocene-Cu(I) complex: DNA interaction & DFT study2019 | Cited by: 17 🧠

  17. 🧬 Ferrocene thioureas as non-covalent DNA binders2018 | Cited by: – 🧬

🔍 Conclusion:

Dr. Bhajan Lal’s combination of research excellence, innovation, international collaboration, and academic leadership clearly qualifies him as an outstanding candidate for the Best Researcher Award. His influential contributions to chemistry—both in theory and application—demonstrate sustained impact, making him a beacon in the scientific community 🔬🏆.

Maryam Deinavizadeh | Nanocatalyst | Best Researcher Award

Dr. Maryam Deinavizadeh | Nanocatalyst | Best Researcher Award

Postdoctoral Researcher at Shahid Chamran University of Ahvaz , Iran.

🔬 Short Biography 🌿💊📚

Dr. Maryam Deinavizadeh 👩‍🔬 is a passionate postdoctoral researcher in Organic Chemistry at Shahid Chamran University of Ahvaz, Iran 🇮🇷. With a strong academic background, she earned her Ph.D. 🎓 in Organic Chemistry from the same university (2015–2022), following an M.Sc. from the University of Arak (2010–2012), and a B.Sc. in Chemistry from Islamic Azad University (2005–2009). Throughout her academic journey, she has shown unwavering dedication to scientific excellence, working under esteemed supervisors like Prof. Ali Reza Kiasat and Prof. Akbar Mobinikhaledi. Her research contributions span gold nanorod synthesis, nanofiber applications, drug delivery, and green catalysis 🌱. A published author and peer reviewer 📚🧪, she has collaborated on impactful projects and lectured in higher education. Dr. Deinavizadeh exemplifies innovation, scientific rigor, and an inspiring commitment to solving critical issues in cancer therapy and nanotechnology 🚀.

PROFILE 

GOOGLE SCHOLAR 

ORCID 

🔍 Summary of Suitability:

Dr. Maryam Deinavizadeh has consistently demonstrated excellence in chemical and nanomaterial research with a particular emphasis on organic synthesis, cancer nanotherapy, and smart drug delivery systems. Her academic trajectory—from B.Sc. to Ph.D. and currently as a postdoctoral researcher—illustrates a progressive commitment to scientific advancement. With over 140 citations, an h-index of 7, and publications in top-tier journals like Scientific Reports, ACS Applied Nano Materials, and The Journal of Physical Chemistry C, she exemplifies the caliber of a leading researcher 👩‍🔬📈.

🔹 Education & Experience 

Dr. Maryam Deinavizadeh’s academic journey began with a Bachelor’s degree 🎓 in Chemistry from Islamic Azad University (2005–2009), followed by a Master’s in Organic Chemistry 🧪 from the University of Arak (2010–2012), and culminating in a Ph.D. in Organic Chemistry from Shahid Chamran University of Ahvaz (2015–2022) with a perfect thesis score 💯. Currently, she is pursuing her Postdoctoral Fellowship (2023–2025) at the same university under the guidance of Prof. Ali Reza Kiasat 👨‍🏫. Her professional experience includes teaching at Shahid Chamran University (2018–2020) and leading research projects funded by CISSC. With hands-on experience in nanomaterial synthesis, drug delivery systems, and photothermal therapies, she actively contributes as a reviewer for renowned journals 📑. Her dedication to academia is demonstrated by her consistent involvement in high-impact research, mentoring, and academic publication 📖. Her growing citation index 📊 and scientific visibility reflect her impactful work in advancing chemical sciences.

🔹 Professional Development 

Dr. Maryam Deinavizadeh has shown consistent commitment to professional development through cutting-edge research and academic service 🔍. As a reviewer for Materials Chemistry Horizons, Alexandria Engineering Journal, and Organic Chemistry Research, she contributes to the scientific community by ensuring research quality 📘. Her teaching experience at Shahid Chamran University sharpened her instructional skills 🧑‍🏫, while her ongoing postdoctoral research enhances her specialization in nanomedicine and organic synthesis 🧬. She authored a Persian-language book on nanocarriers for cancer therapy 📚 and is involved in multidisciplinary collaborations, including with the CISSC. Her scholarly productivity includes numerous SCI-indexed articles, with over 140 citations and an h-index of 7 📈. Dr. Deinavizadeh is a dynamic contributor to the fields of cancer nanotherapy and catalysis, demonstrating a balance of technical expertise, academic leadership, and continuous learning. Her active presence on platforms like Google Scholar, ResearchGate, and LinkedIn ensures global research visibility 🌐.

🏅 Awards and Recognitions

  • 🏆 Best Researcher Award – Nominated by Chemical Scientists Awards

  • 📘 Book Published – Nanocarriers: Properties, Design, and Applications in Cancer Therapy (ISBN: 6224685126)

  • 📈 Citation Achievements – 140 citations, h-index: 7, i10-index: 7

  • 🔍 Journal Reviewer – Materials Chemistry Horizons, Alexandria Engineering Journal, Organic Chemistry Research

  • 🧪 Research Grant – Conducted a CISSC-funded research project (2023–2025)

  • 👩‍🏫 Lecturer – Shahid Chamran University of Ahvaz (2018–2020)

🔬 Research Focus

Dr. Maryam Deinavizadeh’s research centers on the intersection of nanotechnology and organic chemistry, with a primary focus on plasmonic nanostructures for cancer therapy 🧫🎯. She is deeply involved in synthesizing and functionalizing gold nanorods, mesoporous silica, β-CD-based nanosponges, and polymeric nanofibers for targeted drug delivery and photothermal-chemo synergistic treatments of lung cancer cells 💊🔥. Her expertise extends to tissue engineering, green synthesis of catalysts, and multicomponent reactions 🧪. These innovations aim to enhance therapeutic precision while minimizing side effects, aligning with sustainable chemistry principles 🌿. By engineering smart, stimuli-responsive drug carriers, she contributes to the development of next-generation cancer treatments 🚀. Her interdisciplinary approach combines chemistry, material science, and biomedicine to tackle global health challenges. Through high-impact publications and collaborations, Dr. Deinavizadeh continues to pave the way for advanced nanomedical solutions with a strong translational potential for clinical applications 🌍🧬.

Publications & Citations 📚

  1. 📘 “Synergistic chemo-photothermal therapy using gold nanorods supported on thiol-functionalized mesoporous silica for lung cancer treatment”
    🧑‍🔬 Scientific Reports 14(1), 4373 | 📅 2024 | 🔁 Cited by: 28

  2. ⚗️ “Efficient, one-pot synthesis of xanthene derivatives using boron sulphonic acid as a solid heterogeneous catalyst under solvent-free conditions”
    🔬 Research on Chemical Intermediates 41(7), 4387–4394 | 📅 2015 | 🔁 Cited by: 26

  3. 💡 “Smart NIR-light and pH responsive doxorubicin-loaded GNRs@SBA-15-SH nanocomposite for chemo-photothermal therapy of cancer”
    🔭 Nanophotonics 10(12), 3303–3319 | 📅 2021 | 🔁 Cited by: 25

  4. 🧪 “pTSA-catalyzed condensation of xylenols and aldehydes under solvent-free conditions: One-pot synthesis of 9H-xanthene or bisphenol derivatives”
    📘 Comptes Rendus. Chimie 16(11), 1035–1041 | 📅 2013 | 🔁 Cited by: 24

  5. 🌡️ “NIR/pH dual-responsive DOX-loaded AuNRs@S-β-CD nanocomposite for chemo-photothermal synergistic therapy against lung cancer cells”
    ⚛️ The Journal of Physical Chemistry C 126(44), 18754–18766 | 📅 2022 | 🔁 Cited by: 15

  6. 🧬 “Near-infrared/pH dual-responsive nanosponges encapsulating gold nanorods for synergistic chemo-phototherapy of lung cancer”
    🧫 ACS Applied Nano Materials 6(18), 16332–16342 | 📅 2023 | 🔁 Cited by: 14

  7. 🔁 “Fe₃O₄@SiO₂/DABCO(OH) core-shell hybrid nanocomposite: Efficient nanomagnetic catalyst in one-pot synthesis of trithiocarbonate derivatives”
    🧑‍🔬 Materials Chemistry Horizons 2(2), 81–92 | 📅 2023 | 🔁 Cited by: 9

  8. 🌱 “Cellulose nanofibers from waste sugarcane bagasse: Green nanocatalyst for one-pot synthesis of 2H-indazolo[2,1-b]phthalazine-triones”
    🧵 Polymer, 128697 | 📅 2025 | 🔁 Cited by: Upcoming

🔍 Conclusion:

Dr. Maryam Deinavizadeh exemplifies the values of the Best Researcher Award through her innovative research, scholarly contributions, academic service, and dedication to addressing critical healthcare challenges via nanotechnology. Her robust publication record, interdisciplinary expertise, and international collaborations make her a model candidate for this prestigious recognition. 🏅🔬🌍

RAJESWARAN | PHOTOCATALYSIS | Best Researcher Award

Dr. P.RAJESWARAN | PHOTOCATALYSIS | Best Researcher Award

ASSOCIATE PROFESSOR at VEL TECH HIGH TECH Dr.RANGARAJAN Dr,SAKUNTHALA ENGINEERING COLLEGE,CHENNAI,TAMILNADU,India.

🔬 Short Biography 🌿💊📚

Dr. P. Rajeswaran 🎓 is an accomplished academician and researcher in the field of chemistry, with over 14 years of teaching experience in reputed institutions across Tamil Nadu, India 🇮🇳. Holding a Ph.D. in Chemistry with a specialization in Nanoscience and Nanotechnology 🧪 from Bharathiar University, his academic journey began with B.Sc. and M.Sc. degrees in Chemistry followed by an M.Phil. He is currently serving as Associate Professor of Chemistry at Vel Tech High Tech Engineering College, Chennai 🏫. His passion for research is reflected in over 28 SCI/Scopus-indexed publications 📄, spanning topics like photocatalysis, nanomaterials, and environmental remediation. A dedicated mentor and active R&D coordinator, Dr. Rajeswaran continues to shape the next generation of scientists while driving innovation through sustainable chemistry solutions 🌱🔬.

PROFILE 

GOOGLE SCHOLAR 

🔍 Summary of Suitability:

Dr. P. Rajeswaran is a highly accomplished researcher with over 14 years of academic experience and an exceptional track record in the fields of nanoscience, nanotechnology, and environmental chemistry. Holding a Ph.D. in Chemistry, his scholarly excellence is reflected through his prolific publication record—28 SCI/Scopus-indexed journal papers, over 323 citations, an h-index of 12, and consistent involvement in cutting-edge research. He has also supervised Ph.D. scholars, contributed to institutional research development, and secured internal research funding, underscoring his dedication to both discovery and mentorship.

🔹 Education & Experience 

Dr. Rajeswaran’s academic path is steeped in chemical sciences 🧪. He completed his Ph.D. in Chemistry (Nanoscience and Nanotechnology) from Bharathiar University in 2018 🎓, with earlier degrees including an M.Phil. from Vinayaga Missions University and M.Sc./B.Sc. from NMS.S.V.N. College, Madurai 🎒. With 14.7 years of teaching experience 👨‍🏫, he has served in progressive academic roles—from Assistant Professor at institutions like King College of Technology and Mahendra Engineering College, to Associate Professor at Vel Tech High Tech Engineering College, Chennai 🏢. His practical experience in curriculum delivery, departmental leadership, and research supervision has been instrumental in advancing institutional and student success. As a recognized Ph.D. supervisor under Anna University, his teaching is deeply integrated with ongoing research in nanotechnology and materials science 🧬.

🔹 Professional Development 

Dr. Rajeswaran is consistently engaged in professional development, participating in over 14 national and international conferences, workshops, and training sessions 🧑‍🏫🌍. He has presented and published on advanced topics including photocatalytic nanomaterials, dye-sensitized solar cells ☀️, and eco-friendly synthesis techniques for environmental remediation 🌿. Beyond participation, he has contributed as a coordinator of R&D initiatives and held leadership roles such as Head of Department and Discipline Committee Member 🏅. His dedication to evolving with scientific advancements is evident through his diverse academic collaborations and his role in organizing academic events at Vel Tech High Tech. Additionally, he secured research seed funding 💰 and published a patent on eco-friendly coconut soap formulation 🧼. Dr. Rajeswaran remains at the forefront of academic enrichment through sustained learning and institutional development 📚🔍.

🏅 Awards and Recognitions

  • 🏆 Ph.D. Thesis Highly Commended – Bharathiar University (2018)

  • 🎖️ Institute Seed Money Grant – ₹1,10,000 for DSSC project (2024)

  • 📜 Published Patent – Eco-friendly coconut soap formulation (2022)

  • 🧑‍🏫 Ph.D. Supervisorship – Recognized by Anna University

  • 📈 Citations: 323 | h-index: 12 | i10-index: 14 – Google Scholar Metrics

  • 📝 28 International Journal Publications – SCI/Scopus/WoS indexed

  • 🗣️ Presented at 7+ International/National Conferences – Including on nanomaterials and smart chemistry

  • 🧪 R&D Coordinator – Vel Tech High Tech Engineering College

🔬 Research Focus

Dr. Rajeswaran’s research focus lies primarily in Nanoscience and Nanotechnology 🔬, with applications in environmental remediation, photocatalysis, and energy storage devices 🔋. His doctoral and postdoctoral work centers around the synthesis of pure and doped SnO₂ nanoparticles using microwave-assisted techniques, exploring their structural, optical, and catalytic properties 🌈🧪. He has made notable contributions to green chemistry and sustainable solutions by developing nanomaterials for the degradation of toxic dyes and organic pollutants in wastewater 🌍💧. His work extends to graphene-based hybrid materials for supercapacitors and dye-sensitized solar cells, reflecting his interest in renewable energy systems ☀️⚡. Dr. Rajeswaran’s approach blends experimental chemistry with materials engineering to address pressing environmental and energy challenges through nanotechnology, making his research impactful across both academic and industrial domains 🧠⚙️.

Publications & Citations 📚

  1. 📘 Influence of Mn doping on SnO₂ nanoparticles (gas sensing)43 citations, 🗓️ 2015

  2. 🧪 Chitosan–CeO₂–CuO composites for dye degradation & microbial study38 citations, 🗓️ 2024

  3. 🧫 Mn-doped SnO₂ nanoparticles for Congo red degradation29 citations, 🗓️ 2023

  4. WO₃/Graphene hybrid for solar cells22 citations, 🗓️ 2021

  5. 🔋 NiMoO₄@rGO for asymmetric supercapacitors21 citations, 🗓️ 2023

  6. 💧 Chitosan–ZrO₂–CeO₂ for water remediation20 citations, 🗓️ 2023

  7. 🌞 SnO₂–ZnO heterojunctions for dye & Cr(VI) degradation19 citations, 🗓️ 2024

  8. 💡 SnO₂/CoFe₂O₄ nanocomposite for wastewater treatment19 citations, 🗓️ 2024

  9. 🧬 W⁶⁺ doped SnO₂ nanoparticles (photocatalysis)16 citations, 🗓️ 2016

  10. ☀️ Graphene-modified CeO₂ for DSSCs15 citations, 🗓️ 2020

  11. 🔆 Zn-doped SnO₂ nanoparticles (photocatalytic activity)14 citations, 🗓️ 2015

  12. 🌿 Gelatin–Alginate–CeO₂ hydrogel for biological use13 citations, 🗓️ 2024

  13. 🔋 NiCoP@rGO for asymmetric supercapacitors12 citations, 🗓️ 2023

  14. 🌞 Al₂O₃/Graphene for solar cells via microwave12 citations, 🗓️ 2020

  15. 🔋 NiMn₂O₄@rGO hybrids for supercapacitors10 citations, 🗓️ 2023

🔍 Conclusion:

✅ Dr. P. Rajeswaran is highly suitable for the Best Researcher Award. His sustained contributions to applied nanoscience, environmental remediation, and energy materials, paired with leadership in academia and innovation, make him an exemplary candidate who embodies the spirit of research excellence and societal impact.

Svetlna Ilić| Materials Chemistry| Best Researcher Award

Dr. Svetlna Ilić| Materials Chemistry| Best Researcher Award

Senior Research Associate at Vinča Institute of Nuclear Sciences, University of Belgrade, National Institute of the Republic of Serbia,Serbia.

🔬 Short Biography 🌿💊📚

Dr. Svetlana Ilić is a Senior Research Associate at the Vinča Institute of Nuclear Sciences, part of the University of Belgrade and a national research institute in Serbia. She is affiliated with the Materials Laboratory, where her work focuses on the synthesis, processing, and characterization of nanostructured materials for diverse applications—ranging from energy and mechanical engineering to environmental protection and biomedical uses vinca.rs +1 intranet.vin.bg.ac.rs +1 . Dr. Ilić earned her B.Sc. in Inorganic Chemical Technology from the University of Belgrade (2008) and completed her Ph.D. (2018) at the same institution, specializing in sol–gel synthesis and characterization of iron‑doped mullite . Her current research includes developing modified clay separation media, porous semiconductors, oxide-based ceramics, and catalytic filters for diesel particulate removal

PROFILE 

ORCID

Scopus

🔍 Summary of Suitability:

Dr. Svetlana Ilić is a dedicated and accomplished researcher with impactful contributions to ceramic materials science. Her focus on sustainable and functional ceramics derived from natural or waste sources demonstrates her commitment to practical solutions in energy and environmental applications. She also exemplifies academic responsibility through reviewer and editorial roles and active collaboration in European research networks.

🎓 Education

Dr. Svetlana Ilić completed both her Bachelor of Science (BSc) and Doctor of Philosophy (PhD) degrees at the Faculty of Technology and Metallurgy, University of Belgrade, Serbia 🇷🇸. Her academic training laid a strong foundation in materials science, particularly in ceramic processing, powder metallurgy, and advanced characterization techniques. This comprehensive education has been instrumental in shaping her successful research career in functional ceramics and nanomaterials.

🧪 Experience

Since February 1, 2011, Dr. Ilić has been serving as a Senior Research Associate at the Department of Materials, Vinča Institute of Nuclear Sciences, University of Belgrade 🔬. Her work focuses on the synthesis and consolidation of pure and doped mullite powders, development of dense and porous ceramics, and the utilization of natural raw materials for ceramic production. She is highly skilled in structural, microstructural, and mechanical characterization techniques including XRD, SEM, Mössbauer spectroscopy, and nanoindentation. Over the years, she has participated in multiple national and international projects related to refractory materials, LTCC materials, thermal insulators, and porous ceramic structures.

🛠️ Skills

Dr. Ilić possesses a versatile set of technical and soft skills. Technically, she is proficient in advanced materials synthesis and characterization methods. She demonstrates high competency in using tools like XRD, SEM, nanoindentation, and spectroscopy. In addition to her experimental expertise, she is highly organized, responsible, and an effective communicator. She is fluent in Serbian and proficient in English, and adept in Microsoft Office, Google Drive, and various digital research platforms. Her collaborative spirit, adaptability, and willingness to learn make her a valuable member of interdisciplinary research teams.

🏅 Awards and Recognitions

Dr. Ilić’s scientific excellence is reflected through her active involvement in editorial and peer review activities. She served as a Guest Editor for Metallurgical and Materials Data between April and July 2024 and has reviewed articles for prestigious journals including the Journal of the American Ceramic Society, Journal of the European Ceramic Society, and Ceramics International. Her contributions as a reviewer and editor underscore her expertise and respected position in the ceramic science community, even though specific awards are not listed.

🔬 Research Focus

Dr. Ilić’s research is primarily centered on the synthesis, processing, and characterization of nanostructured and ceramic materials for applications in energy, environmental protection, and mechanical systems. She specializes in mullite-based ceramics—both dense and porous—as well as in the development of refractory and insulating materials from natural and waste sources. Her recent work includes modifying porous ceramics with nano-additives for improved catalytic performance, studying the magnetic properties of self-assembled graphene films, and developing materials for wastewater treatment and diesel particulate filtration. Her involvement in European COST Actions and multidisciplinary projects highlights her commitment to sustainable materials science and applied research.

Publications & Citations 📚

  • Ilić, S., Maletaškić, J., Skoko, Ž., Vuksanović, M. M., Radovanović, Ž., Ristović, I., & Šaponjić, A. (2025). Utilization of waste clay–diatomite in the production of durable mullite-based insulating materials. Applied Sciences, 15(13), 7512. https://doi.org/10.3390/app15137512

  • Savić, A., Vuksanović, M. M., Savić, M., Knežević, N., Šaponjić, A., Ilić, S., & Egelja, A. (2025). Modified silica particles coated with Cu–Al layered double hydroxide for phosphate and arsenate removal in water treatment. Molecules, 30(10), 2138. https://doi.org/10.3390/molecules30102138

  • Ilic, S., Šaponjić, A., Ivanovski, N. V., Posarac-Marković, M., Kokunesoski, M., Janacković, D., & Devecerski, A. (2024). Influence of iron on the mullite formation. Science of Sintering, 56(4), 425–438. https://doi.org/10.2298/SOS240425017I

  • Posarac-Marković, M., Jovic Orsini, N., Ilic, S., Kuzmanovic, M., Šaponjić, A., Radovanović, Z., & Matović, B. (2024). Structural and morphological studies on yttrium-doped magnesium aluminate spinel powders synthesized by mixed-fuel solution combustion synthesis approach. Science of Sintering, 56(8), 821–836. https://doi.org/10.2298/SOS240821036P

  • Ružić, J., Maletaškić, J., Radovanović, Ž., & Ilić, S. (2024). Mechanical properties of mullite investigated by nanoindentation. Metallurgical and Materials Data, 29, Article 29. https://doi.org/10.30544/MMD29

  • Kokunesoski, M., Janacković, D., Kićević, D., Ilic, S., & Šaponjić, A. (2023). The effect of acrylate on the properties and machinability of alumina ceramics. Science of Sintering, 55(1), 103–115. https://doi.org/10.2298/SOS2301103K

🔍 Conclusion:

Highly suitable for the Best Researcher Award. Dr. Ilić combines scientific excellence, sustained productivity, community service, and innovation. She stands out as a role model in applied materials research and is poised to make further significant contributions on a global scale with continued support and recognition.

Ulzhalgas Issayeva| Medicinal Chemistry| Young Scientist Award

Dr. Ulzhalgas Issayeva| Medicinal Chemistry| Young Scientist Award

Senior researcher at JSC Institute of Chemical Sciences im. A.B. Bekturova,Kazakhstan.

🔬 Short Biography 🌿💊📚

Dr. Ulzhalgas B. Issayeva is a Senior Researcher at the JSC Institute of Chemical Sciences named after A.B. Bekturova in Kazakhstan. She specializes in materials science and nanotechnology, with a strong research focus on the synthesis and characterization of nanostructured materials, particularly tin dioxide-based nanosized films. Dr. Issayeva has contributed to numerous peer-reviewed publications and actively participates in national and international scientific collaborations. Her work supports advancements in chemical technologies and functional materials relevant to sensors, catalysis, and energy applications.

PROFILE 

ORCID

Scopus

🔍 Summary of Suitability:

Dr. Issayeva has demonstrated clear promise as a young researcher with a strong foundation in synthetic organic and pharmaceutical chemistry. Her contributions to the development of antimicrobial agents, supported by patents and peer-reviewed publications, reflect scientific rigor and innovation. The combination of advanced education, professional training, research productivity, and awards highlights her as a dynamic figure in Kazakhstan’s scientific community.

🎓 Education

Ulzhalgas Issayeva has a solid academic foundation in chemistry and pharmaceutical sciences. She earned her Bachelor’s degree in Chemical Technology of Organic Substances from Al-Farabi Kazakh National University (2008–2012), focusing her diploma work on the synthesis of halogenated propargyl alcohols. She continued her studies with a Master’s degree in Natural Sciences from Abai Kazakh National Pedagogical University (2014–2016), researching new unsaturated derivatives of piperidine. She completed her PhD in Pharmaceutical Production Technology at Asfendiyarov Kazakh National Medical University (2018–2021), with a dissertation focused on the chemical development of bioactive substances based on piperidine-containing esters and amides of fluorobenzoic acids.

💼 Experience

Dr. Issayeva brings over a decade of professional experience in scientific research and pharmaceutical chemistry. From 2012 to 2022, she worked as a Junior Researcher at the A.B. Bekturov Institute of Chemical Sciences, engaging in synthetic and natural drug compound development. Since 2022, she has been serving as a Chief Scientific Researcher at the National Center for Scientific Research, Training, and Education in Civil Protection under the Ministry of Emergency Situations of Kazakhstan. Her professional development also includes internships, notably at SANTO Pharmaceutical in Shymkent and the University of Pécs, Hungary, where she enhanced her expertise in advanced analytical techniques like gas-liquid chromatography and atomic absorption spectroscopy.

🛠 Skills

Dr. Issayeva possesses a versatile skill set that spans analytical chemistry, synthetic drug development, and laboratory research. She demonstrates strong teamwork, organizational, and analytical skills. She is proficient in computer applications and fluent in Kazakh (native), Russian, and has an advanced command of English. Her certifications include Good Clinical Laboratory Practice (GCLP) and compliance with ISO/IEC 17025:2019 standards, underscoring her competence in laboratory quality systems.

🏅 Awards & Certifications

Recognized for her contributions to science, Dr. Issayeva was awarded the prestigious State Scholarship for Talented Young Scientists by the Ministry of Education and Science of the Republic of Kazakhstan in 2019. She also received the “Үздік жас ғалым – 2023” (“Best Young Scientist – 2023”) award. She holds certifications in Good Clinical Laboratory Practice, covering organizational standards, SOPs, validation processes, and laboratory operations, as well as ISO 17025 for testing and calibration lab competencies.

🔬 Research Focus

Dr. Issayeva’s research focuses on the synthesis and development of biologically active compounds, particularly piperidine-based derivatives with antimicrobial properties. She has co-authored multiple peer-reviewed publications in the field of medicinal chemistry and holds patents for novel compounds exhibiting antimicrobial activity. Her scientific contributions advance pharmaceutical technology, especially in the search for effective bioactive molecules. Her work bridges fundamental chemistry and applied pharmaceutical research, contributing to Kazakhstan’s national and international scientific progress.

Publications & Citations 📚

  • Title: Study of Hierarchical Structures in Tin Dioxide Based Nanosized Films

  • Journal: Herald of the Kazakh-British Technical University

  • Publication Date: December 25, 2024

  • DOI: 10.55452/1998-6688-2024-21-4-219-233

  • Authors: A. K. Shongalova, I. A. Lebedev, E. A. Bondar, E. A. Dmitriyeva, A. I. Fedosimova, S. A. Ibraimova, A. E. Kemelbekova, U. B. Issayeva, B. Zhumabay, B. M. Nurbayev, et al.

  • Citation Count: Not available yet (recent publication)

  • Title: Synthesis and Antimicrobial Activity of Fluorobenzoic Acid Amides

  • Journal: Chemical Journal of Kazakhstan

  • Publication Date: June 15, 2022

  • DOI: 10.51580/2022-2/2710-1185.67

  • Authors: U. B. Issayeva, G. S. Akhmetova, K. D. Praliyev, U. M. Datkhayev, M. T. Omyrzakov, R. B. Seidahmetova, D. A. Abdambayev, T. M. Seilkhanov

  • Citation Count: Not specified (check on Crossref or Google Scholar)

 

  • Title: The Search for Biologically Active Compounds in the Series of N-ethoxyethylpiperidine Derivatives

  • Journal: Eurasian Chemico-Technological Journal

  • Publication Year: 2019

  • DOI: 10.18321/ectj822

  • EID (Scopus ID): 2-s2.0-85071847054

  • Authors: U. B. Issayeva, G. S. Akhmetova, U. M. Datkhayev, M. T. Omyrzakov, K. D. Praliyev, S. A. Ross

  • Citation Count: Indexed in Scopus (exact number needs to be checked on Scopus)

🔍 Conclusion:

Highly recommended for the Research for Young Scientist Award. Dr. Ulzhalgas Issayeva possesses the academic qualifications, research achievements, and potential for continued impact in the fields of medicinal chemistry and pharmaceutical sciences. With opportunities for broader global engagement, her trajectory aligns well with the purpose of the award: recognizing promising early-career scientists.

 

 

Aleksandar Đorđević| Electroanalitical Chemistry| Chemical Scientist Award

Mr. Aleksandar Đorđević| Electroanalitical Chemistry| Chemical Scientist Award

Research Assistant at Institute of General and Physical Chemistry,Serbia.

🔬 Short Biography 🌿💊📚

🎓 Prof. Day-Shan Liu received his Ph.D. in Optical Sciences from National Central University in January 2003. Since February 2011, he has been a distinguished Professor at the Department of Electro-Optical Engineering and the Institute of Electro-Optical and Materials Science at National Formosa University, Taiwan 🇹🇼. With an academic journey grounded in optics and material science, Prof. Liu has established himself as a leader in optoelectronic research 🔬. His scholarly contributions include more than 200 journal and conference papers and five patents 📚📑. His work centers on the deposition of optical and optoelectrical thin films using sputtering and PECVD technologies, contributing to applications such as flexible optoelectronic packaging, transparent conductive electrodes, and ZnO-based LEDs 💡. Passionate about innovation, Prof. Liu continues to advance functional thin film technologies and inspire the next generation of scientists 🌟.

PROFILE 

ORCID

Scopus

🔍 Summary of Suitability:

Aleksandar M. Đorđević has demonstrated strong scientific capability in synthesizing and applying advanced materials for chemical sensing and environmental remediation. His work is methodologically sound, application-driven, and contributes to solving real-world environmental challenges. The combination of academic research and practical chemical applications is notable and highly commendable.

📘 Education 

Aleksandar M. Đorđević holds two Master of Science degrees from the University of Belgrade. He earned his MSc in Physical Chemistry from the Faculty of Physical Chemistry in 2015, with a thesis focused on the Electroanalytical determination of phenols. Prior to that, he completed an MSc in Chemistry in 2014 at the Faculty of Chemistry, with a thesis on The educational role of chemistry teachers. He began his academic journey with a BSc in Chemistry from the same faculty in 2013, completing a thesis on Concepts about atomic structure, chemical symbols and formulas across educational levels.

📈Experience

Currently serving as a Research Assistant at the Institute of General and Physical Chemistry in Belgrade since 2021, Aleksandar has built a multidisciplinary career. He began at the institute as a Junior Researcher from 2019 to 2021. Earlier roles include serving as a chemist at Trayal Corporation AD in Kruševac between 2018 and 2019. He also worked in education, teaching chemistry at Primary School ‘Braća Jerković’ in Železnik from 2015 to 2017 and at the European Business School ‘Milutin Milanković’ in Belgrade from 2014 to 2015.

🧠 Skills

Aleksandar’s expertise lies in environmental chemistry, electrochemical sensor design, carbon-based materials, and the integration of chemical education research into scientific practice. His laboratory skills span electroanalytical techniques, nanomaterial synthesis, and pollutant detection using carbonaceous adsorbents and electrochemical platforms. Additionally, his interdisciplinary approach includes curriculum development and chemical education assessment.

Research Focus 🔍🤖

Aleksandar’s primary research areas include environmental remediation, analytical electrochemistry, and materials development for water treatment. He focuses on designing electrochemical sensors and carbon-based materials—such as activated carbon derived from coconut shells and bimetallic nanocomposites—for detecting and removing hazardous compounds like nitrobenzene. He is also active in chemical education research and history of chemistry, bridging scientific discovery with educational outreach.

Awards and Honors 🏆🎖️

Aleksandar has published in peer-reviewed journals such as Processes, Microchemical Journal, and the Journal of Electroanalytical Chemistry. Although early in his research career, his contributions to applied electrochemistry and environmental remediation have begun gaining citations, with an h-index of 1 and a growing citation record. His research collaborations with senior scientists and participation in multidisciplinary projects further reflect his emerging recognition in the field.

Publications & Citations 📚

  • 1. FAST AND EASY SYNTHESIS OF CoAu/rGO NANOCOMPOSITES FOR THE DETECTION OF As³⁺ IONS IN AQUEOUS SOLUTIONS

    • 📅 Year: 2025

    • 🧑‍🤝‍🧑 Authors: Aleksandar M. Đorđević; Kristina Radinović; Jadranka Milikić; Nemanja Gavrilov; Dubravka Relić; Dalibor Stanković; Biljana Šljukić

    • 📚 Type: Conference paper

    • 🔗 DOI: 10.46793/VODA25.261DJ

    2. Synthesis, characterization and application of bimetallic XAg/rGO (X = Co, Cu) nanocomposites for electrochemical detection of nitrobenzene

    • 📅 Year: 2025-06

    • 🧑‍🤝‍🧑 Authors: Aleksandar M. Đorđević; Jadranka Milikić; Sara Knežević; Aleksandar Jovanović; Dubravka Relić; Dalibor Stanković; Biljana Šljukić

    • 📘 Journal: Microchemical Journal

    • 🔗 DOI: 10.1016/j.microc.2025.113826

    3. Efficient Removal of Nitrobenzene and Its Compounds by Coconut Shell-Derived Activated Carbon

    • 📅 Year: 2025-06-30

    • 🧑‍🤝‍🧑 Authors: Aleksandar M. Đorđević; Jadranka Milikić; Vedran Milanković; Danica Bajuk Bogdanović; Kristina Radinović; Milica Marčeta Kaninski; Dubravka Relić; Dalibor Stanković; Biljana Šljukić

    • 📘 Journal: Processes

    • 🔗 DOI: 10.3390/pr13072072

    4. FAST, SIMPLE AND CHEAP SYNTHESIS OF CO/rGO MATERIALS FOR THE DETECTION OF ARSENIC IONS IN WATER SAMPLES

    • 📅 Year: 2024-04-27

    • 🧑‍🤝‍🧑 Authors: Aleksandar M. Đorđević; Kristina Radinović; Jadranka Milikić; Nemanja Gavrilov; Dalibor Stanković; Önder Metin; Biljana Šljukić

    • 📚 Type: Conference abstract, 8th Faculty of Science PhD Student Symposium

    • 📘 ISBN: 978-953-6076-76-5

    5. Method for the CO₂ breakthrough measurements

    • 📅 Year: 2023

    • 🧑‍🤝‍🧑 Authors: Aleksandar M. Đorđević; Marko Krpić; Dejana Popović; Mihajlo Mudrinić; Željka Nikolić; Zoran Šaponjić; Milica Marčeta Kaninski; Vladimir Nikolić

    • 📚 Type: Conference abstract, ET CST 2023 – International Virtual Conference

    6. Determination of the adsorption capacity of zeolites for capturing CO₂ from the air

    • 📅 Year: 2023-11

    • 🧑‍🤝‍🧑 Authors: Marko Krpić; Aleksandar M. Đorđević; Boris Rajčić; Željka Nikolić

    • 📚 Type: Conference abstract, 9th Conference of Young Chemists of Serbia

    • 📘 ISBN: 978-86-7132-084-9

🔍 Conclusion:

While Aleksandar M. Đorđević may not yet have the academic seniority or citation metrics of a top-tier chemical scientist, his innovative research, cross-sector experience, and focus on environmental impact make him a very promising early-career candidate. He is well-suited for a mid-level or emerging scientist award, and with further output and visibility, he could soon be competitive for broader international accolades in chemical sciences.

Bernard GUY | relativistic thermodynamics | Best Researcher Award

Prof. Dr. Bernard GUY | relativistic thermodynamics | Best Researcher Award

Emeritus Research Director at Mines Saint-Etienne Mines Telecom Institute, France.

🔬 Short Biography 🌿💊📚

Bernard Guy is an esteemed French scientist and Emeritus Professor from Mines Saint-Etienne, Institut Mines Télécom. 🎓 A graduate of the prestigious École des Mines (Paris, 1971), he holds multiple doctoral degrees: Docteur ingénieur, Ingénieur géologue, and a Doctorate ès sciences from Université Paris 6. 🧑‍🔬 Throughout his illustrious career, Dr. Guy contributed to research and teaching in a wide range of scientific disciplines, including geology, geochemistry, thermodynamics, physics, and the philosophy of science. 📘🔬 He has actively participated in renowned academic societies such as the Société Française de Physique and the Comité Français d’Histoire de la Géologie. 🏛️ A thinker with a multidisciplinary outlook, he also contributes to discussions on the foundations of physics and space-time theories. ⏳🌌 His commitment to scientific inquiry continues through his role on the steering committee of the Joint European Thermodynamics Conference (JETC). 🔄🌍

PROFILE 

ORCID

🔍 Summary of Suitability:

Bernard Guy, Emeritus Professor from Mines Saint-Etienne (Institut Mines Télécom, France), exemplifies the highest standards of scholarly excellence and interdisciplinary innovation. With an academic foundation that includes engineering and multiple doctoral degrees from leading French institutions, he has made pioneering contributions in thermodynamics, geology, mathematical modeling, and the foundations of physics. 📚⚛️ His teaching and research career spans decades, marked by groundbreaking insights into space-time theory and finite-time thermodynamics.

📘 Education & Experience

Bernard Guy’s academic journey began with his engineering degree from École des Mines (Paris) in 1971. 🏗️ He then advanced his academic credentials with a Docteur ingénieur, specializing in geological engineering, and further earned a Doctorate ès sciences from Université Paris 6. 🎓 His multidisciplinary expertise spans earth sciences, thermodynamics, mathematical modeling, and the philosophy of science. 🪨📐 He spent the majority of his professional career at Mines Saint-Etienne, part of the Institut Mines Télécom network, where he served as a professor and researcher. 👨‍🏫 His roles involved mentoring students and advancing interdisciplinary research linking physical science fundamentals with geological and thermodynamic systems. 🔍🌐 Dr. Guy’s legacy includes significant contributions to scientific thought, both in academic literature and collaborative research platforms across Europe. 🌍📖 Even after retirement, his engagement in the academic community continues, making him a respected voice in his areas of expertise. 🧠📝

📈 Professional Development

Throughout his career, Bernard Guy has consistently expanded his professional horizons through research, interdisciplinary teaching, and active membership in scientific societies. 🌟 As a leading figure in physics and geology, he has engaged with the Société Française de Physique, the Comité Français d’Histoire de la Géologie, and the Société des Amis d’André Marie Ampère. 🔬📜 His involvement with the Joint European Thermodynamics Conference (JETC) as a steering committee member demonstrates his continuous commitment to fostering collaborative scientific exchange. 🤝🔄 He has played an instrumental role in shaping discussions around the intersections of space, time, and movement—core to modern physics and relativity. ⏱️🌌 His professional development is marked not just by academic titles but by his intellectual curiosity and contributions that transcend conventional disciplinary boundaries. 🧩💡 Whether in the lab, lecture hall, or international symposium, Dr. Guy continues to influence generations of scientists and researchers worldwide. 🌍🎤

Research Focus 🔍🤖

Bernard Guy’s research lies at the intersection of physical and earth sciences. 🌍 His primary focus includes geology, geochemistry, thermodynamics, and mathematical modeling. 🪨⚛️ Over the years, he has explored the foundations of physics, with a particular interest in the philosophy of science and how concepts such as space, time, and motion interrelate within scientific theories like relativity. ⌛🌌 His work is noted for its interdisciplinary reach—bridging scientific rigor with philosophical inquiry. 🤝🔬 Dr. Guy’s exploration of thermodynamic principles and their relevance to both geological systems and theoretical physics has placed him at the forefront of academic discourse on energy and entropy. 🔄♨️ He contributes to the conceptual development of science by blending analytical modeling with philosophical reflection, making his research crucial for both empirical and theoretical advancements. 📘🧠 His category of research is best described as Interdisciplinary Physical Sciences with an Emphasis on Thermodynamics and Epistemology. 🧪🔍

Awards and Honors 🏆🎖️

    • 🥇 Arthur Iberall Gold Medal (2020) – Awarded at the Thermodynamics 2.0 International Conference (USA) for contributions to the understanding of space, time, and motion in physics.

    • 🏛️ Steering Committee Member – Joint European Thermodynamics Conference (JETC), reflecting his leadership in thermodynamic research across Europe.

    • 🧑‍🔬 Honorary Title: Emeritus – Conferred by Mines Saint-Etienne in recognition of his lifelong service and impact in education and research.

    • 📜 Membership in Prestigious Societies – Including Société Française de Physique and Société des Amis d’André Marie Ampère, reflecting academic recognition.

Publications & Citations 📚

📘 (Finite-Time) Thermodynamics, Hyperbolicity, Lorentz Invariance: Study of an ExampleEntropy, 2025, [DOI: 10.3390/e27070700] 🔁 Source: Crossref 📚
📄 Refreshing the Theory of RelativityPreprint, 2025, [DOI: 10.20944/preprints202504.1951.v1] 🌌 Source: Crossref 🌀
📄 Finite Time Thermodynamics and Lorentz Invariance. Study of an ExamplePreprint, 2025, [DOI: 10.20944/preprints202504.1774.v1] ⌛ Source: Crossref 🧪
📘 A Diamond UniverseInternational Journal of Fundamental Physical Sciences, 2024, [DOI: 10.14331/ijfps.2024.330166] 💎 Source: Crossref 🌠
📘 On an Exceptional Sample of Wooden Crystallographic Models…European Journal of Mineralogy, 2022, [DOI: 10.5194/ejm-34-85-2022] 🪵 Source: Crossref 🧭

🔍 Conclusion:

Bernard Guy’s lifelong dedication to scientific exploration, his trailblazing contributions to theoretical physics and thermodynamics, and his influential presence in academic circles make him an outstanding candidate for the Best Researcher Award. 🏆 His work not only pushes the boundaries of science but also inspires a deeper understanding of the universe through rigorous inquiry and cross-disciplinary engagement. 🌌🔍

Arul Murugesan | Food safety | Best Researcher Award

Dr. Arul Murugesan | Food safety | Best Researcher Award

Postdoctoral Researcher at Jiangsu University ,China.

🔬 Short Biography 🌿💊📚

Dr. Arul Murugesan 🇮🇳, born on June 5, 1991, is an accomplished chemist currently serving as a Postdoctoral Fellow at Jiangsu University, China 🇨🇳. He earned his Ph.D. in Chemistry from Durban University of Technology, South Africa 🇿🇦, in 2018, following his B.Ed. (2014), M.Sc. (2013), and B.Sc. (2011) degrees from Indian institutions. Dr. Arul has built an impressive research profile in organic chemistry, catalysis, and nanomaterials, with extensive work on carbon quantum dots, MOFs, and fluorescence sensors. With over 20 publications in high-impact journals 📚, his contributions span food safety, biomedical sensors, and green chemistry. Fluent in Tamil and English 🗣️, he brings a multicultural perspective to global scientific collaboration. Married and committed to scientific excellence, Dr. Arul is dedicated to advancing sustainable chemistry solutions through innovation and interdisciplinary research 🌱⚗️.

PROFILE 

ORCID

GOOGLE SCHOLAR 

🔍 Summary of Suitability:

Dr. Arul Murugesan is an outstanding candidate for the Best Researcher Award, with a remarkable track record in chemistry, materials science, and food safety research. With a Ph.D. from Durban University of Technology and postdoctoral experience at top institutions in South Africa and China, he has consistently demonstrated scientific excellence. His interdisciplinary research integrates organic synthesis, catalysis, nanotechnology, and analytical chemistry, contributing significantly to both academic science and industrial applications. He is known for innovative use of microwave-assisted synthesis, green chemistry approaches, and smart sensing materials in food and biomedical applications.

📘 Education & Experience

Dr. Arul Murugesan pursued his academic journey in chemistry with dedication, beginning with a B.Sc. from Thiruvalluvar University (2011), followed by an M.Sc. at Bharathiar University (2013), and a B.Ed. from Tamil Nadu Teachers Education University (2014) 🎓. He earned his Ph.D. in Chemistry from Durban University of Technology, South Africa, in 2018, where he later worked as a Postdoctoral Fellow for five years (2018–2023) 🔬. In December 2023, he joined the School of Food and Biological Engineering at Jiangsu University, China, continuing his postdoctoral research journey 🇨🇳. His academic and professional experiences span synthetic organic chemistry, catalysis, food packaging, and biosensing technologies. Dr. Arul’s international exposure and practical expertise have enabled him to make valuable contributions to materials chemistry and food science 🧪🌍.

📈 Professional Development

Dr. Arul Murugesan has consistently demonstrated growth through academic and research pursuits across borders 🌐. During his Ph.D. and postdoctoral tenure at Durban University of Technology, he developed novel catalysts and functional materials, mastering microwave synthesis, molecular docking, and fluorescence sensing 🧬. His work integrates advanced materials like MOFs and CQDs into real-world applications in food quality, pathogen detection, and environmental safety 🧪🥼. At Jiangsu University, he’s exploring interdisciplinary approaches in food packaging and non-thermal food processing. Dr. Arul continuously collaborates with leading scientists globally and regularly publishes in high-impact journals 📚. His professional development is driven by curiosity, innovation, and a strong foundation in materials and analytical chemistry. He actively engages in workshops, science forums, and peer-reviewed publications, reflecting a commitment to lifelong learning and impactful research 💡🌍.

Research Focus 🔍🤖

Dr. Arul’s research primarily focuses on advanced materials chemistry with real-world applications in food and biomedical fields 🍱🧪. His expertise includes organic chemistry, catalysis, metal-organic frameworks (MOFs), carbon quantum dots (CQDs), and fluorometric sensors 🔬. He develops hybrid nanomaterials for food safety monitoring, pathogen detection, and environmental sustainability. His projects include peptide-based hydrogels, binding interaction studies, non-invasive food texture analysis, and spectroscopic food quality evaluation 📊. With a deep interest in green and microwave-assisted synthesis, Dr. Arul bridges the gap between fundamental chemistry and functional technologies. His interdisciplinary approach encompasses food packaging innovation, non-thermal meat processing, and sensing applications involving fluorescence and MOFs. His current research at Jiangsu University is transforming food engineering with smart materials and precision analytical tools, contributing to public health and sustainability 🌿🧫.

Awards and Honors 🏆🎖️

  • 🥇 Top Published Doctoral Student Per Faculty of the Year, Durban University of Technology, 2017

  • 📚 Top University Publishers Recognition (Postdoctoral Fellow), Durban University of Technology, 2017

  • 🏅 Best Poster Presentation – First Prize, Nirmala College for Women, India, 2020

Publications & Citations 📚

  1. 📘 Sulfonic acid functionalized boron nitride nanomaterials…22 citations, 2017, Materials Chemistry and Physics 🔬

  2. 📗 Synthesis of methyl piperazinyl-quinolinyl α-aminophosphonates…19 citations, 2020, Phosphorus, Sulfur, and Silicon 💊

  3. 📕 One-pot synthesis via 1,3-dipolar cycloaddition…12 citations, 2017, Journal of Molecular Structure 🧪

  4. 📙 One-pot synthesis of Claisen–Schmidt reaction derivatives…12 citations, 2017, Synthetic Communications 🧬

  5. 📘 Functionalized MOFs with biomolecules for food contaminants detection11 citations, 2024, Crit. Rev. Food Sci. Nutr. 🥗

  6. 📗 Green synthesis of benzimidazole derivatives using Zn-BN catalyst11 citations, 2022, Heliyon 🌿

  7. 📕 Synthesis of ethyl–piperazinyl quinolinyl-(E)-chalcone derivatives…11 citations, 2017, J. Taiwan Inst. Chem. Eng. ⚗️

  8. 📙 Microwave synthesis of fused pyrans and their bioassays6 citations, 2019, J. Heterocyclic Chem. 🧫

  9. 📘 Microwave-assisted BN nano-catalyst for acridine derivatives6 citations, 2017, Adv. Mater. Lett. 💡

  10. 📗 Synthesis & docking of bis-(chlorophenyl)-quinolinyl derivatives5 citations, 2021, J. Mol. Struct. 💉

  11. 📕 Lanthanide-Doped Upconversion Luminescence in detection3 citations, 2025, Chemosensors 🧠

  12. 📙 Green approach: Titania-based catalyst for pyran synthesis3 citations, 2016, Adv. Mater. Lett. 🍃

  13. 📘 Fluorescent oxo-fluoro quinoline (E)-chalcones via Al-SrTiO31 citation, 2023, Synthetic Communications

  14. 📗 Microwave synthesis of nicotinonitrile derivatives & docking1 citation, 2018, J. Iranian Chem. Soc. 🧬

  15. 📕 2-Acetyl quinoline analogues: ADME & docking studiesNo citation yet, 2025, Indian J. Chem. 💻

  16. 📘 Ultrasound in Food Industry: Texture & Quality AnalysisNo citation yet, 2025, Foods 🍖

🔍 Conclusion:

Dr. Arul Murugesan exemplifies the qualities of an exceptional researcher—innovation, productivity, and global scientific impact. His ability to translate fundamental chemistry into applied solutions for real-world challenges positions him as an ideal recipient of the Best Researcher Award. His dedication to excellence and sustainable scientific advancement makes this recognition both timely and well-deserved. 🏅🌍🧪

Day-Shan Liu | Catalysis | Best Researcher Award

Prof. Dr. Day-Shan Liu | Catalysis | Best Researcher Award

Professor at Institute of Electro-Optical and Materials Science, National Formosa University . ,Taiwan.

🔬 Short Biography 🌿💊📚

🎓 Prof. Day-Shan Liu received his Ph.D. in Optical Sciences from National Central University in January 2003. Since February 2011, he has been a distinguished Professor at the Department of Electro-Optical Engineering and the Institute of Electro-Optical and Materials Science at National Formosa University, Taiwan 🇹🇼. With an academic journey grounded in optics and material science, Prof. Liu has established himself as a leader in optoelectronic research 🔬. His scholarly contributions include more than 200 journal and conference papers and five patents 📚📑. His work centers on the deposition of optical and optoelectrical thin films using sputtering and PECVD technologies, contributing to applications such as flexible optoelectronic packaging, transparent conductive electrodes, and ZnO-based LEDs 💡. Passionate about innovation, Prof. Liu continues to advance functional thin film technologies and inspire the next generation of scientists 🌟.

PROFILE 

ORCID

🔍 Summary of Suitability:

Prof. Liu exemplihttps://chemicalscientists.com/?p=13828&preview=truefies excellence in both the depth and breadth of research. With over 200 peer-reviewed publications, 5 patents, and two decades of experience, he has demonstrated consistent innovation and impact in the field of optical sciences and electro-optical engineering. His research outcomes have been widely cited, indicating recognition and relevance within the international scientific community. As a full professor and research leader, his mentorship, international collaborations, and pioneering work in thin-film technologies and ZnO-based devices highlight his remarkable academic influence.

📘 Education & Experience

🎓 Prof. Day-Shan Liu earned his Ph.D. in Optical Sciences from National Central University in January 2003 🎓. Following his doctoral studies, he embarked on a distinguished academic career that led him to become a full Professor at National Formosa University in February 2011 👨‍🏫. He serves within the Department of Electro-Optical Engineering and the Institute of Electro-Optical and Materials Science 🏫. Over the years, Prof. Liu has built an impressive portfolio of scholarly output, publishing over 200 research papers and holding five patents 📄📘. His expertise spans optical thin films, nano-materials, and optoelectronics, particularly in thin-film deposition methods like sputtering and PECVD ⚙️. His lab focuses on practical and theoretical advances that enable novel applications in flexible electronics and photonic devices 💡. With his deep-rooted experience and unwavering dedication, Prof. Liu plays a vital role in Taiwan’s research and academic landscape 🌏.

📈 Professional Development

📈 Prof. Day-Shan Liu has demonstrated a remarkable trajectory of professional development since earning his doctorate in Optical Sciences in 2003 🎓. Over the past two decades, he has transitioned from an emerging scholar to a well-established academic leader and innovator 🌟. At National Formosa University, he not only teaches and mentors but also leads cutting-edge research in optical and functional thin films 🌐. His proficiency in advanced deposition techniques like sputtering and PECVD has positioned him at the forefront of electro-optical engineering 🛠️. Through interdisciplinary collaboration and continuous innovation, he has expanded his impact across materials science, optoelectronics, and nanotechnology 💻🔬. With a portfolio of 200+ publications, five patents, and multiple international presentations, Prof. Liu actively contributes to the global academic community 🌍. His focus on sustainability and next-gen device fabrication underscores his vision of aligning technological progress with real-world needs 🌿.

Research Focus 🔍🤖

🔬 Prof. Day-Shan Liu’s research focus lies at the intersection of optical thin films, functional materials, and optoelectronic device engineering 🎯. His core expertise involves the development and low-temperature deposition of Transparent Conductive Oxide (TCO) films for applications in flexible displays and transparent electronics 📱💡. He explores ZnO-based optoelectronic devices, including innovative light-emitting diodes (LEDs), emphasizing energy efficiency and cost-effectiveness 🔋✨. His group also pioneers in surface modification layers for enhancing super-hydrophilicity, vital in photocatalytic and anti-fog applications 🌊🧪. Another research thrust includes nanoparticles and their functional integration in thin film technologies for smart devices 🔍📉. By mastering deposition techniques such as sputtering and PECVD, Prof. Liu advances OLED packaging and thin-film stability for real-world applications 📦🔧. His research not only pushes boundaries in material science but also contributes to emerging solutions in sustainable and flexible electronics 🌱📲.

Awards and Honors 🏆🎖️

  • 🧪 Over 200 peer-reviewed publications in journals and conferences

  • 🛠️ Holder of 5 patents in the field of thin film technology and optoelectronics

  • 👨‍🏫 Promoted to Professor at National Formosa University (Feb. 2011)

  • 📢 Recognized speaker and contributor at numerous international scientific forums

  • 🌟 Acknowledged for research excellence in ZnO-based LEDs and TCO films

Publications & Citations 📚

  • 🔬 Thermal stability of indium tin oxide thin films co‑sputtered with zinc oxide (2008) – cited ~49 times 📈 medjrf.com+12researchgate.net+12ouci.dntb.gov.ua+12

  • 🧪 Microstructure investigations of indium tin oxide films co‑sputtered with zinc oxide at room temperature (May 2006) – cited ~17 times 📉 researchgate.net+1researchgate.net+1

  • Electrical, Optical and Material Properties of ZnO‑Doped Indium‑Tin Oxide Films Prepared Using RF Magnetron Cosputtering System at Room Temperature (Mar 2006) – cited ~23 times 📊 ouci.dntb.gov.ua+3researchgate.net+3researchgate.net+3

  • 🧩 Investigation on the Deposition of an AlN‑ZnO/ZnO/AlN‑ZnO Double Heterojunction Structure Using RF Magnetron Cosputtering (Aug 2019) – cited ~3 times ✨ researchgate.net+4researchgate.net+4ouci.dntb.gov.ua+4

  • 🎯 Guided‑mode resonance pressure sensor based on a stretchable LDPE film (Jul 2022) – research interest; citations not specified yet 📡

🔍 Conclusion:

Prof. Day-Shan Liu stands out as an ideal recipient of the Best Researcher Award. His outstanding scholarly output, practical innovations in optoelectronics, and dedication to advancing scientific knowledge make him a role model in the academic community. His research not only contributes to theoretical advancements but also addresses real-world technological challenges—firmly establishing his candidacy for this prestigious honor. 🌟👏