Maryam Nayeri | Nanotechnology | Chemical Scientist Award

Chemical Scientist Award

Maryam Nayeri
Affiliation Islamic Azad University
Country Iran
Scopus ID 35810875000
Documents 26
Citations 285
h-index 9
Subject Area Nano Biosensors
Event International Chemical Scientist Awards
ORCID 0000-0003-0479-2431

Maryam Nayeri,
Islamic Azad University

Maryam Nayeri is affiliated with Islamic Azad University, Iran, and has established research activities in nano biosensors through multidisciplinary investigations involving analytical chemistry, nanotechnology, and biosensing applications. Her scholarly publications and citation record demonstrate continuous academic engagement within chemical sciences and related interdisciplinary research areas.[1][2]

Abstract

Maryam Nayeri’s research focuses on nano biosensors and analytical technologies supporting chemical and biomedical applications. Her publication record, citation performance, and interdisciplinary collaborations indicate sustained scholarly activity contributing to nanoscale sensing technologies and scientific knowledge within chemical sciences.[1][3]

Keywords

Nano biosensors, Chemical Sciences, Nanotechnology, Electrochemical Sensors, Biosensing, Analytical Chemistry, Biomedical Diagnostics, Nanomaterials, Surface Chemistry, Research Innovation.[2]

Introduction

Nano biosensors integrate nanotechnology with analytical chemistry to improve molecular detection, diagnostic accuracy, and sensing performance. Maryam Nayeri’s academic work aligns with these objectives through interdisciplinary investigations supporting scientific understanding and practical laboratory applications across chemical and biomedical research environments.[1][3]

Research Profile

Affiliated with Islamic Azad University, Maryam Nayeri has authored twenty-six indexed publications, accumulated 285 citations, and achieved an h-index of nine. Her research primarily emphasizes nano biosensors, analytical methods, and nanomaterial-based sensing technologies within interdisciplinary scientific collaborations.[1][2]

Research Contributions

Her investigations contribute to developing sensitive biosensing platforms, improving analytical detection strategies, and advancing nanomaterial applications for biological and chemical measurements. These studies support ongoing scientific efforts toward reliable diagnostics, environmental monitoring, and innovative laboratory technologies.[2]

Publications

The research portfolio contains peer-reviewed journal publications indexed within Scopus, addressing nano biosensors, analytical chemistry, and nanotechnology. Published studies demonstrate continuing scholarly productivity while supporting interdisciplinary collaboration and scientific dissemination through recognized international academic journals.[1]

Research Impact

Citation metrics and publication performance indicate measurable academic influence within nano biosensor research. Her scholarly outputs have supported knowledge exchange, inspired subsequent investigations, and contributed to the broader development of nanotechnology-enabled analytical and biomedical sensing methodologies.[1][2]

Award Suitability

Based on documented publication metrics, interdisciplinary research activities, and contributions to nano biosensor development, Maryam Nayeri demonstrates qualifications consistent with recognition by the International Chemical Scientist Awards, acknowledging sustained scientific productivity and meaningful scholarly contributions.[1][2]

Conclusion

Maryam Nayeri’s academic profile reflects continued participation in nano biosensor research through publications, citations, and interdisciplinary collaboration. Her documented scholarly achievements illustrate ongoing contributions to chemical sciences while supporting future advances in nanotechnology and analytical research.[1][3]

External Links

References

  1. Elsevier. (n.d.). Scopus Author Details: Maryam Nayeri, Author ID 35810875000. Scopus.

    https://www.scopus.com/authid/detail.uri?authorId=35810875000

  2. ORCID. (n.d.). Maryam Nayeri ORCID Record.

    https://orcid.org/0000-0003-0479-2431

  3. International Chemical Scientist Awards. (2026). Award Information.

    https://chemicalscientists.com/

Şerife Saçmacı | Nanotechnology | Best Researcher Award

Best Researcher Award

Şerife Saçmacı
Erciyes University

Şerife Saçmacı,
Affiliation Erciyes University
Country Turkey
Scopus ID 24341832400
Documents 53
Citations 1,243
h-index 22
Subject Area Chemistry, Analytical Chemistry, Nanocomposites, Nanomaterials
Event International Chemical Scientist Awards
ORCID 0000-0001-9188-4574

Şerife Saçmacı is affiliated with Erciyes University and has established a recognized research profile in analytical chemistry, nanocomposites, and nanomaterials. Her scholarly record, supported by Scopus-indexed publications, demonstrates consistent scientific productivity and measurable citation impact within the international research community.[1]

Abstract

This article summarizes the academic profile of Şerife Saçmacı, emphasizing scholarly achievements, publication performance, citation influence, and contributions to analytical chemistry and nanomaterials research. The information supports consideration for recognition through the International Chemical Scientist Awards while presenting a neutral overview of measurable academic indicators.[1]

Keywords

Analytical Chemistry; Nanocomposites; Nanomaterials; Trace Element Analysis; Scopus; Citation Analysis; Research Impact; Academic Recognition.[2]

Introduction

Şerife Saçmacı has developed a research career centered on analytical chemistry and advanced nanomaterials. Her investigations address modern analytical methodologies and material applications while contributing to peer-reviewed scientific literature. Citation metrics and publication consistency indicate sustained academic engagement within internationally recognized research databases.[1][2]

Research Profile

Affiliated with Erciyes University, the researcher has authored 53 Scopus-indexed publications with more than 1,200 citations and an h-index of 22. Research interests encompass analytical chemistry, nanocomposites, and nanomaterials, reflecting interdisciplinary scientific collaboration and continuous scholarly productivity across multiple research topics.[1][3]

Research Contributions

Research contributions include developing analytical procedures, advancing nanocomposite-based materials, and improving techniques for sensitive chemical determination. These studies support laboratory innovation, environmental analysis, and material characterization while providing reproducible methodologies adopted and referenced by researchers working in related scientific disciplines.[2][3]

Publications

The publication portfolio includes articles published in reputable peer-reviewed journals indexed by Scopus. The collection demonstrates consistent productivity, collaboration with fellow researchers, and scientific dissemination across analytical chemistry and nanotechnology disciplines, providing valuable references for subsequent investigations and evidence-based experimental research.[1][4]

Research Impact

With 1,243 citations and an h-index of 22, the research demonstrates measurable academic influence. Citation performance indicates that published findings have contributed to ongoing scientific discussions, supporting knowledge development and reinforcing the relevance of the researcher’s work within analytical chemistry and nanomaterials research communities.[1][2]

Award Suitability

The documented publication record, citation performance, and sustained contributions to analytical chemistry provide objective indicators supporting consideration for academic recognition. Evaluation for the International Chemical Scientist Awards may reasonably consider these measurable achievements together with broader scholarly service and scientific significance.[1][4]

Conclusion

Şerife SaΓ§macΔ±’s academic profile reflects sustained research productivity, recognized citation impact, and continued contributions to analytical chemistry and nanomaterials. Available scholarly indicators present a balanced basis for evaluating scientific excellence and professional recognition through international academic award assessment processes.[1][2]

References

  1. Elsevier. (n.d.). Scopus author details: Şerife Saçmacı, Author ID 24341832400.
    https://www.scopus.com/authid/detail.uri?authorId=24341832400
  2. ORCID. (n.d.). ORCID Record: Şerife Saçmacı.
    https://orcid.org/0000-0001-9188-4574
  3. Saçmacı, Ş., Güzel, R., Saçmacı, M., Demirdâgen, R. E., Gündogdu, A., Ateş, N., Taştan, O., Ceylan, M., Emen, F. M., & Ocakoglu, K. (2026). Synthesis, characterization, and application of magnetic novel nanofiber membranes for the removal of heavy-metal, organic and biological pollutants from wastewater. RSC Advances, 16(32),
    https://pubs.rsc.org/ra/article/16/32/29172/1268194/

  4. International Chemical Scientist Awards. (n.d.). Award Information.
    https://chemicalscientists.com/

Prabha Kannan | Nanotechnology | Research Excellence Award

Dr. Prabha Kannan | Nanotechnology | Research Excellence Award

Associate Professor | Mother Teresa Women’s University | India

Dr.Prabha Kannan is an active researcher in nanomaterials, electrochemical sensing, and functional semiconductor-based analytical platforms, with particular expertise in doped metal oxide nanoparticles and carbon-dot-enabled optical systems for biomedical and food-safety monitoring. The author has contributed 30 peer-reviewed publications, receiving 403 citations and achieving an h-index of 12, reflecting consistent scholarly impact. Recent work includes advanced sensor development using rare-earth-doped SnOβ‚‚ nanostructures for antibiotic detection in complex matrices. With collaborations involving over 80 co-authors, the research supports improved analytical sensitivity, environmental monitoring, and public-health applications, demonstrating strong interdisciplinary engagement and meaningful contributions to applied chemical sensing technologies.

Citation Metrics (Scopus)

403
300
200
100
0

Citations

403

Documents

30

h-index

12

Citations

Documents

h-index

Nadeem Abbas | Nanotechnology | Editorial Board Member

Dr. Nadeem Abbas | Nanotechnology | Editorial Board Member

Researcher | Prince Sultan University | Saudi Arabia

Dr. N. Abbas is a distinguished researcher recognized for his pioneering contributions to fluid mechanics, heat transfer, and nanofluid dynamics, with a strong focus on hybrid nanofluids, magnetohydrodynamics (MHD), nonlinear stretching surfaces, and microscale thermal phenomena. His research emphasizes the development of advanced mathematical and computational models to analyze complex flow behaviors relevant to modern engineering and biomedical systems. With an extensive publication record in leading international journals such as Chinese Journal of Physics, Computer Methods and Programs in Biomedicine, Results in Physics, and International Communications in Heat and Mass Transfer, Dr. Abbas has established himself as an influential figure in applied mathematics and thermofluid sciences. His most cited works on MHD hybrid nanofluid flow over nonlinear stretching cylinders, hybrid-based nanofluid flow over curved surfaces, and three-dimensional stagnation point flows have collectively garnered over 800 citations, reflecting his significant academic impact. Integrating analytical, numerical, and simulation-based approaches, Dr. Abbas’s research addresses key challenges in energy systems, materials processing, and biomedical fluid modeling, fostering international collaborations across the Middle East and Asia that advance the understanding of hybrid nanofluid applications for enhanced heat transfer and optimized fluid performance. His recent studies on nonlinear modeling of hybrid nanofluid flows over permeable and thermally slipping surfaces provide valuable insights into sustainable energy systems and industrial cooling processes. Through his innovative research and globally recognized publications, Dr. Abbas continues to contribute substantially to computational physics, applied mathematics, and mechanical engineering, driving progress in smart materials and nanofluid technologies with profound scientific and societal relevance.

Profiles : Google Schalor

Featured Publications

  1. Abbas, N., Nadeem, S., Saleem, A., Malik, M. Y., Issakhov, A., & Alharbi, F. M. (2021). Models base study of inclined MHD of hybrid nanofluid flow over nonlinear stretching cylinder. Chinese Journal of Physics, 69, 109–117.
    Cited by: 235

  2. Nadeem, S., Abbas, N., & Malik, M. Y. (2020). Inspection of hybrid based nanofluid flow over a curved surface. Computer Methods and Programs in Biomedicine, 189, 105193.
    Cited by: 228

  3. Nadeem, S., Abbas, N., & Khan, A. U. (2018). Characteristics of three-dimensional stagnation point flow of hybrid nanofluid past a circular cylinder. Results in Physics, 8, 829–835.
    Cited by: 155

  4. Abbas, N., Saleem, S., Nadeem, S., Alderremy, A. A., & Khan, A. U. (2018). On stagnation point flow of a micropolar nanofluid past a circular cylinder with velocity and thermal slip. Results in Physics, 9, 1224–1232.
    Cited by: 122

  5. Abbas, N., Rehman, K. U., Shatanawi, W., & Malik, M. Y. (2022). Numerical study of heat transfer in hybrid nanofluid flow over permeable nonlinear stretching curved surface with thermal slip. International Communications in Heat and Mass Transfer, 135, 106107.
    Cited by: 108

Dr. N. Abbas’s research on hybrid nanofluid dynamics and magnetohydrodynamics has significantly advanced the understanding of thermal and flow transport phenomena, enabling innovations in energy efficiency, biomedical engineering, and sustainable industrial processes. His work bridges fundamental science and practical application, fostering global progress in advanced materials and fluid technologies.

Yasmina Khane | Nanotechnology | Best Researcher Award

Assoc. Prof. Dr. Yasmina Khane | Nanotechnology | Best Researcher Award

Associate Professor | University of Ghardaia | Algeria

Dr. Yasmina Khane, affiliated with the UniversitΓ© de Ghardaia in Algeria, is an accomplished researcher whose work bridges the disciplines of materials chemistry, environmental science, and nanotechnology. Her research primarily explores the synthesis, characterization, and functional applications of nanostructured materials particularly metal and metal oxide nanoparticles in catalysis, environmental remediation, and sustainable energy systems.Dr. Khane’s investigations have made notable contributions to green nanotechnology, especially through the development of phyto-synthesized nanoparticles using plant extracts as eco-friendly reducing agents. Her recent study on silver nanoparticles synthesized via Cotula cinerea extract highlights her commitment to sustainable materials science. This work demonstrated the potential of bio-fabricated nanomaterials in enhancing salt tolerance in wheat (Triticum durum), emphasizing agricultural resilience and plant-environment interactions under stress conditions.A central theme in her research is photocatalysis the design and optimization of semiconductor-based catalysts for pollutant degradation and energy-related reactions. Dr. Khane has synthesized and investigated photocatalytic systems such as ZnO-impregnated biomaterials and Cuβ‚‚NiSnSβ‚„ thin films, which have shown remarkable efficiency in degrading organic contaminants like dyes and pharmaceutical residues. Her publications in journals such as Scientific Reports, Inorganic Chemistry Communications, and Reaction Kinetics, Mechanisms and Catalysis reflect her depth in reaction kinetics, surface chemistry, and materials modification.With over 657 citations, 34 publications, and an h-index of 12, Dr. Khane has established herself as an influential figure in applied chemical research. Her interdisciplinary collaborations with over 150 co-authors underscore a strong international research network. She continually integrates chemistry, physics, and biology to advance eco-conscious technologies for water purification, soil protection, and renewable energy conversion.Overall, Dr. Khane’s scientific portfolio demonstrates a commitment to environmental sustainability through the innovative use of nanostructured catalysts and green synthesis methods. Her work contributes meaningfully to the global pursuit of cleaner technologies, reflecting the synergy between nanoscience, catalysis, and environmental protection.

Profiles : Google Scholar | Scopus | ORCID | ResearchGate | LinkedIn

Featured Publications

  1. Fenniche, F., Khane, Y., Hafsi, Z., Farhat, M., Aouf, D., & Alarbi, F. (2025). Photo catalytic degradation of Coomassie Brilliant Blue using a ternary Polyaniline/Feβ‚‚O₃/Graphene nanocomposite under visible light. Sebha University Conference Proceedings, 103–109.

  2. Daoud, M., Khane, Y., Aouf, D., Benturki, O., Girods, P., Rogaume, Y., & Fontana, S. (2025). Efficient removal of malachite green using modified Algerian date palm spikelet: Characterization, design of experiment (Box–Behnken), density functional theory analysis. Reaction Kinetics, Mechanisms and Catalysis, 1–27.

  3. Kesbi, B., Salhi, N., Khane, Y., Albukhaty, S., Addad, A., Abideen, Z., Alsufyani, H., … (2025). Potential effect of phyto-synthesized silver nanoparticles using Cotula cinerea Del raw extract on salt tolerance of wheat seeds (Triticum durum desf., Boussellam variety). Scientific Reports, 15(1), 28061. Citations: 1

  4. Farhat, M., Al Madani, M. A., Abdullah, T., Embaya, M., Saeed, A., Saleh, A., … (2025). Evaluation of the physical properties of local wheat husk ash and its effects on the compressive strength of hardened cement paste. Discover Chemistry, 2(1), 89.

  5. Nezzari, A., Medina, S., Khane, Y., Boublenza, H., Guezzoul, M., Zoukel, A., … (2025). Synthesis, properties, and photocatalytic degradation of Brilliant Green dye using Cuβ‚‚NiSnSβ‚„ thin films under ultraviolet irradiation. Inorganic Chemistry Communications, 174, 114021. Citations: 3

Dr. Yasmina Khane’s research advances sustainable nanotechnology through eco-friendly materials and photocatalysis, offering innovative solutions for environmental purification, agricultural resilience, and renewable energy. Her work bridges science and society, driving global progress toward a cleaner and greener future.

Jared Fischer | Nanotechnology | Best Researcher Award

Dr. Jared Fischer | Nanotechnology | Best Researcher Award

Assistant Professor at Oregon Health and Science University , United States.

Dr. Jared Fischer 🧬 is an Assistant Professor at the Oregon Health & Science University (OHSU) in the Department of Molecular and Medical Genetics/CEDAR πŸ§‘β€πŸ«. With a dual degree in Zoology and Chemistry πŸ§ͺ from Miami University and a PhD in Molecular Genetics 🧫 from the University of Cincinnati, he has cultivated a rich career in cancer biology, senescence, and in vivo imaging. His innovative work in nanomedicine, cancer detection, and senolytic therapies has led to numerous high-impact publications and grants. Dr. Fischer is not only a prolific researcher πŸ“š but also a committed educator and mentor to future scientists πŸ‘¨β€πŸ”¬.

PROFILEΒ 

GOOGLE SCHOLARΒ 

SCOPUSΒ 

ORCIDΒ 

πŸ” Summary of Suitability:

Dr. Jared Fischer is an outstanding biomedical scientist and faculty member at Oregon Health & Science University (OHSU), serving as Assistant Professor in the Department of Molecular and Medical Genetics/CEDAR. His research career exemplifies consistent innovation, high-impact scholarship, and a commitment to translational medicine. His work spans multiple disciplines, including molecular genetics, cancer biology, nanomedicine, and biomedical imaging. Dr. Fischer has secured prestigious federal and institutional grants and consistently publishes in top-tier journals. Moreover, he has demonstrated exemplary service through education, mentorship, and committee leadershipβ€”solidifying his role as a leader and innovator in the research community.

πŸŽ“ Education and Experience

πŸŽ“ Education:

  • πŸ§ͺ BS in Zoology & BA in Chemistry, Miami University (1999–2003)

  • 🧬 PhD in Molecular Genetics, University of Cincinnati (2003–2008)

  • πŸ”¬ Postdoctoral Fellowship in Molecular and Medical Genetics, OHSU (2009–2017)

🏒 Academic Experience:

  • πŸ‘¨β€πŸ« Assistant Professor, OHSU, Molecular & Medical Genetics (2017–Present)

Professional Development πŸš€πŸ“–

Dr. Fischer’s professional growth is rooted in continuous learning, leadership, and service πŸ“ˆ. He completed the Leadership Development Course from Brave Heart Consulting in 2024 🧠 and was certified by the Mentorship Academy in 2023. Actively involved in mentoring underrepresented students πŸ‘¨β€πŸŽ“, he has contributed to cancer education through programs like the CURE Program and the Partnership for Scientific Inquiry πŸ”. As IACUC vice-chair and editorial reviewer ✍️, his institutional service has significantly impacted research governance and publication. His commitment to advancing scientific education, ethics, and community health underscores his dynamic and evolving career 🎯.

Research Focus πŸ”πŸ€–

Dr. Fischer’s research centers on cancer biology 🧫, senescence πŸ§“, and molecular imaging 🧲, particularly through nanomedicine and bioengineering innovations. His work targets early cancer detection πŸ§β€βš•οΈ, tumor progression 🧬, and therapeutic development using multifunctional nanomaterials and senolytic peptides πŸ’Š. He is known for pioneering diagnostic assays and nanoparticle-based imaging techniques πŸ§ͺ, as demonstrated in his recent publications on pancreatic and colorectal cancers. His interdisciplinary focus bridges molecular genetics, biomedical imaging, and computational modeling 🧠, aligning with cutting-edge research in oncology and personalized medicine πŸ§‘β€βš•οΈ. His contributions are shaping next-generation strategies in precision diagnostics and therapeutic delivery πŸš€.

Awards and Honors πŸ†πŸŽ–οΈ

  • 🧾 OHSU β€œPaper of the Month” for PNAS publication, December 2016

  • πŸ§‘β€πŸŽ“ Graduate Student of the Year, University of Cincinnati, Department of Molecular Genetics, 2008

  • 🎀 Invited Speaker at Cambridge University, Cold Spring Harbor, and various ACS events

  • πŸŽ—οΈ Recognized across high-profile media (Nature, Science News, Forbes, JAMA) for breakthrough cancer diagnostics research

Publications & Citations πŸ“š

πŸ“˜ 2025

  • 🧬 Early detection of pancreatic cancer by protease-activated nanosensor assay – Published in Science Translational Medicine, featured in Nature, Science News, Forbes πŸ“ˆ

πŸ“— 2024

  • πŸ§ͺ Profiling protease cleavage in plasma for pancreatic cancer – Published in Scientific Reports

  • 🧫 Tumor-immune hybrid cells and colorectal cancer metastasis via CTLA4 – Published in Clinical and Experimental Medicine

πŸ“™ 2023

  • πŸ’‘ Ultrafast ultrasound imaging using blinking nanoparticles – Published in Nano Letters

  • 🧬 Gas-stabilizing nanoparticles for cancer therapy – Published in Advanced Materials Interfaces

πŸ“— 2022

  • βš—οΈ Hybrid PLGA nanoparticles for enzyme therapy – Published in Pharmaceutics

  • πŸ”¬ Computational design of TP63-TP53 inhibitors – Published in Molecular Cancer Therapeutics

πŸ“˜ 2021

  • 🧠 Modeling FOXO4-TP53 to create senolytic peptides – Published in EBioMedicine

  • πŸ” Label-free enrichment of rare neoplastic cells using microfluidics – Published in Communications Biology

πŸ“• 2020

  • πŸ“Š Weight loss, biomarkers & cancer risk – Published in Surg Obes Relat Dis

πŸ“˜ 2019

  • 🧫 Silica cloaking of adenovirus for gene delivery – Published in Journal of Controlled Release

πŸ“™ 2018

  • 🧬 Cell fusion and hybrid circulating tumor cells – Published in Science Advances, highly cited and shared πŸ“ˆ

πŸ“— 2017

  • 🧬 Genetic divergence in tumor evolution – Published in Nature Genetics, highly cited and impactful πŸ“ˆ

πŸ“• 2016

  • 🧬 TgfΞ²R2 in intestinal stem cells – Published in PNAS, earned “Paper of the Month” at OHSU πŸ†

  • πŸ§ͺ Pms2 ATPase domain study – Published in DNA Repair

πŸ“˜ 2014

  • 🧬 Apc-deficient crypts and chemoprevention – Published in Carcinogenesis

πŸ“• 2012

  • 🧬 Phenotypic outcomes of Apc loss – Published in Oncogene

πŸ“™ 2008–2006 (select highlights)

  • 🧬 Mutation in aging mice – Published in Aging Cell

  • πŸ” Loss of heterozygosity in mouse tissues – Published in Mutation Research

  • 🧫 Co-mutagenic effects of arsenic and benzo[a]pyrene – Published in Mutation Research

πŸ“— 2004–2003

  • 🧬 Evolution of Pneumocystis species – Published in Microbiology & J Eukaryotic Microbiology

πŸ” Conclusion:

Dr. Jared Fischer is a truly deserving nominee for the Best Researcher Award. His body of work demonstrates not only scientific rigor and innovation but also a profound impact on patient care, early disease detection, and therapeutic development. His interdisciplinary approach, dedication to mentoring, and consistent scholarly output position him among the top-tier researchers advancing modern medicine today.

 

 

Shimaa Hosny | Nano coordination chemistry | Best Researcher Award

 

Assoc. Prof. Dr. Shimaa Hosny | Nano coordination chemistry | Best Researcher Award

Assoc.prof at New valley university in Egypt.

Dr. Shimaa Hosny πŸ§ͺ is an Associate Professor of Inorganic Chemistry at the Faculty of Science, New Valley University, Egypt πŸ‡ͺπŸ‡¬. She earned her Ph.D. in Inorganic and Analytical Chemistry from Al-Azhar University, focusing on novel Schiff bases and metal complexes. Dr. Hosny’s research interests include green synthesis of metal nanocomplexes 🌿, biomedical applications πŸ’Š, and corrosion inhibition studies πŸ›‘οΈ. She has authored numerous publications in prestigious journals and was honored with the “Best Researcher Award” πŸ† in Advanced Nanomaterials. Dr. Hosny actively contributes to international conferences and is a member of leading scientific societies 🌍.

Professional Profile
Suitability for the Researcher Award

In my opinion, Dr. Shimaa Hosny πŸ§ͺ is highly suitable for the Best Researcher Award due to her exceptional contributions to the field of inorganic chemistry and nanotechnology 🌟. She has consistently demonstrated innovation in green synthesis of metal complexes and nanocomplexes 🌿, targeting biomedical applications like anticancer and antiviral treatments πŸ’ŠπŸ¦ . Her work on corrosion inhibition πŸ›‘οΈ and phase transformations πŸ”„ has direct industrial and environmental impact, supporting sustainability goals 🌍.

πŸŽ“ Education:

  • πŸ§ͺ Ph.D. in Inorganic and Analytical Chemistry
    Al-Azhar University (2015 – 2019)
    Thesis: Synthesis and Characterization of Novel Schiff Bases and Metal Complexes

  • 🧬 M.Sc. in Inorganic and Analytical Chemistry
    Al-Azhar University
    Thesis: Binary and Ternary Metal Complexes of Some Dyes with Amino Acids

  • 🧫 B.Sc. in Special Chemistry
    Al-Azhar University (2005 – 2009)

 

πŸ’Ό Professional Experience:

  • πŸ‘©β€πŸ”¬ Associate Professor of Inorganic Chemistry
    New Valley University (June 2024 – Present)

  • πŸ‘©β€πŸ« Lecturer of Inorganic and Analytical Chemistry
    New Valley University (May 2019 – June 2024)

  • πŸ”¬ Assistant Lecturer of Analytical Chemistry
    New Valley University (December 2014 – May 2019)

 

Professional Development πŸš€πŸ“–

Dr. Shimaa Hosny 🌟 has demonstrated remarkable professional development through her dedication to innovative research and academic excellence. She actively explores green synthesis of metal nanocomplexes 🌿, biomedical applications πŸ’‰, and corrosion inhibition studies βš™οΈ. Dr. Hosny has presented her work at prestigious conferences 🎀, such as the International Conference on Chemistry and the Environment and Sustainable Development Conference 🌍. She has been honored with the “Best Researcher Award” πŸ† in Advanced Nanomaterials and contributes significantly to scientific societies πŸ§ͺ. Her expertise in advanced analytical techniques and computational chemistry πŸ’» continues to advance the field of inorganic chemistry.

 

Research Focus πŸ”πŸ€–

Dr. Shimaa Hosny’s πŸ§ͺ research focuses on several advanced categories in the field of inorganic chemistry. Her work specializes in the green synthesis of metal complexes and nanocomplexes 🌿, aiming to create eco-friendly materials with biomedical applications πŸ’Š such as anticancer and antiviral agents 🦠. She also studies corrosion inhibition πŸ›‘οΈ, helping protect metals in harsh environments, and conducts phase transformation research πŸ”„ on metals and alloys. Using cutting-edge techniques like molecular docking and DFT calculations πŸ’», Dr. Hosny develops innovative solutions for pharmaceuticals πŸ’‰, material science πŸ—οΈ, and sustainable technology 🌍, contributing greatly to scientific progress.

πŸ… Awards & Honors:

  • πŸ† Best Researcher Award
    International Research Awards on Advanced Nanomaterials and Nanotechnology

  • 🎀 Invited Speaker
    16th International Conference on Chemistry and its Role in Development (ICCRD’15), 2023

  • 🌱 Speaker
    The First Conference of Environment and Sustainable Development: Get Green

  • πŸ“š Speaker
    The 15th Young Researchers Scientific Conference – “The Role of Education in Supporting the Development of Green Economy”

 

Publication Top Notes:

πŸ“— Green synthesis of nanoparticles for varied applications: Green renewable resources and energy-efficient synthetic routes – MMGGAG Mohamed Madani, Shimaa Hosny, Dalal Mohamed Alshangiti, Norhan … | Nanotechnology Reviews | πŸ—“οΈ 2022 | πŸ”— Cited by: 114

🌾 Rice Husk-Derived Nanomaterials for Potential Applications – HG Shimaa Hosny Ali, Mohammed Y. Emran | Waste Recycling Technologies for Nanomaterials Manufacturing | πŸ—“οΈ 2021 | πŸ”— Cited by: 32

πŸ§ͺ Novel nano copper complexes of a new Schiff base: green synthesis, a new series of solid Cr (II), Co (II), Cu (II), Pd (II) and Cd (II) chelates, characterization, DFT, DNA … – S Hosny, GA Gouda, SM Abu‐El‐Wafa | Applied Organometallic Chemistry | πŸ—“οΈ 2022 | πŸ”— Cited by: 27

🌿 Development of Novel Nano-Sized Imine Complexes Using Coriandrum sativum Extract: Structural Elucidation, Non-Isothermal Kinetic Study, Theoretical … – S Hosny, RFA El-Baki, ZHA El-Wahab, GA Gouda, MS Saddik, A Aljuhani, … | International Journal of Molecular Sciences | πŸ—“οΈ 2023 | πŸ”— Cited by: 26

🧬 Synthesis of a new sulfadimidine Schiff base and their nano complexes as potential anti-COVID-19 and anti-cancer activity – S Hosny, MS Ragab, RF Abd El-Baki | Scientific Reports | πŸ—“οΈ 2023 | πŸ”— Cited by: 26

πŸ”¬ Spectrophotometric Studies on Binary and Ternary complexes of Some Metal Ions with Alizarin Red S and Cysteine – FHKSHA A.A.Gahlan, M.A.El-Mottaleb, N.A.Badawy | International Journal of Advanced Research | πŸ—“οΈ 2014 | πŸ”— Cited by: 25

🧷 Synthesis and characterization of Ni (II), Cu (II), Zn (II) and Azo dye based on 1,10-o-phenanthroline binary complexes: corrosion inhibition properties and computational studies – HM Al-Saidi, GA Gouda, M Abdel-Hakim, NI Alsenani, A Alfarsi, … | International Journal of Electrochemical Science | πŸ—“οΈ 2022 | πŸ”— Cited by: 23

πŸ“Œ Conclusion:

With a strong publication record πŸ“„, innovative research themes, and impactful applications across health, environment, and industry, Dr. Shimaa Hosny is an outstanding candidate for the Best Researcher Award πŸ…. Her dedication to advancing sustainable, health-focused solutions through inorganic chemistry sets her apart as a leader in her field.