Navruzbek Habibullayev | Inorganic Chemistry | Best Researcher Award

Mr. Navruzbek Habibullayev | Inorganic Chemistry | Best Researcher Award

Senior lecturer | Tyumen state university | Russia

Habibullayev Navruzbek Nasibillo ugli is a dedicated chemical scientist and academic with expertise in solid-state chemistry and rare-earth selenides. Currently serving as a Senior Lecturer at Tyumen State University, he has established himself as an emerging researcher with significant contributions to the synthesis, structural analysis, and physicochemical characterization of advanced inorganic materials. His academic journey began with a Bachelor’s degree in Chemistry from the National University of Uzbekistan, followed by a Master’s and PhD from Tyumen State University. Over the years, he has actively engaged in cutting-edge research, publishing his work in reputed journals such as Journal of Alloys and Compounds, Crystal, and Solid State Chemistry. His career reflects a balance of teaching, mentoring, and research, with a focus on bridging fundamental chemistry with applied innovations. Passionate about advancing materials science, he continues to explore the structural and functional properties of rare-earth compounds for future technological applications.

Professional Profiles

Habibullayev Navruzbek Nasibillo ugli has pursued an extensive academic journey that reflects both depth and dedication to the chemical sciences. He began his higher education at the National University of Uzbekistan, where he earned a Bachelor’s degree in Chemistry, laying the foundation for his scientific career. Building on this, he continued his postgraduate studies at Tyumen State University, where he successfully completed both his Master’s degree and PhD. His doctoral research focused on the synthesis and investigation of complex quaternary rare-earth selenides, an area that blends structural chemistry with advanced materials science. Through his studies, he gained strong expertise in experimental design, crystallography, thermal analysis, and physical research methods. His academic formation was further enriched by research internships at leading scientific institutes in Novosibirsk and St. Petersburg, which provided him with valuable exposure to modern laboratory techniques and international collaboration. This solid educational background underpins his teaching and research excellence.

ExperienceΒ 

With a strong academic foundation, Habibullayev Navruzbek Nasibillo ugli has developed a rich professional experience that bridges teaching, research, and collaboration. He began his career at Tyumen State UniversityΒ  as an Assistant in the Department of Inorganic and Physical Chemistry, quickly progressing to the role of Senior Lecturer. In this capacity, he teaches specialized courses, including Physical Research Methods, Crystal Chemistry, and Thermal Analysis, ensuring that students gain both theoretical knowledge and practical laboratory skills. Alongside teaching, he has actively contributed to several funded research projects, such as the synthesis, structural characterization, and electrophysical studies of compounds like EuLnAgSe3 and SrLnCuSe3. His consultancy experience includes developing luminophore powders based on La2O2S:Er, bridging academic research with industrial application. He has also engaged in collaborative internships at scientific institutes in Novosibirsk and St. Petersburg, enhancing his international research exposure. His career reflects a strong integration of education, research, and applied innovation.

Professional Development

Throughout his career, Habibullayev Navruzbek Nasibillo ugli has placed strong emphasis on continuous professional development to enhance both his academic and research expertise. His progression from assistant to senior lecturer at Tyumen State University reflects his dedication to academic excellence and leadership. He has participated in research internships at prestigious institutes in Novosibirsk and St. Petersburg, where he gained advanced training in synthesis methods, structural characterization, and analytical techniques. These experiences broadened his scientific perspective and allowed him to engage with internationally recognized experts in solid-state chemistry. Furthermore, his involvement in an RSF grant project provided him with valuable project management skills and experience in large-scale research coordination. By consistently publishing in Q1 and Q2 journals, he has kept abreast of cutting-edge developments in materials chemistry. His professional journey highlights a commitment to self-improvement, collaborative networking, and continuous learning, ensuring his sustained contributions to both education and scientific discovery.

Skills & Expertise

Habibullayev Navruzbek Nasibillo ugli possesses a diverse set of skills and expertise that combine academic depth with practical application. His core competencies lie in solid-state chemistry, particularly in the synthesis and analysis of rare-earth selenides and related compounds. He is highly skilled in X-ray diffraction (XRD), thermal analysis, and scanning electron microscopy (SEM), enabling him to carry out detailed structural and physicochemical characterizations. As an experienced lecturer, he brings strong teaching and mentoring skills, delivering advanced courses such as Crystal Chemistry and Thermal Analysis with clarity and rigor. His research expertise extends to evaluating electrophysical properties of novel materials, which is critical for advancing functional applications. Beyond laboratory skills, he has demonstrated proficiency in grant management, collaborative research, and academic publishing, with contributions to high-impact journals. His combined expertise in research, teaching, and applied projects makes him a versatile professional contributing meaningfully to both academia and industry.

Resarch Focus

The primary research focus of Habibullayev Navruzbek Nasibillo ugli centers on solid-state chemistry, particularly the synthesis, structural analysis, and property evaluation of rare-earth selenides and complex quaternary compounds. His work aims to explore the structure–property relationships of these materials, providing insights into their potential applications in electronics, optoelectronics, and energy systems. His completed and ongoing projects include the synthesis and electrophysical investigation of compounds such as EuLnAgSe3 and SrLnCuSe3, which offer promising characteristics for functional materials. He also engages in applied research, such as developing La2O2S:Er-based luminophore powders with targeted compositions for industrial use. His scientific approach integrates advanced methods like XRD, SEM, and thermal analyses, ensuring comprehensive evaluation of new materials. By publishing in high-ranking journals and contributing to collaborative projects, he continuously advances knowledge in the field. His research focus reflects both fundamental curiosity and applied innovation in the development of next-generation materials.

Awards & Recognitions

Although at an early stage of his career, Habibullayev Navruzbek Nasibillo ugli has already earned recognition for his contributions to solid-state chemistry and materials science. His research has been published in high-impact journals, including Journal of Alloys and Compounds (Q1), Crystal (Q2), Magnetochemistry (Q2), The European Physical Journal Plus (Q2), and Solid State Chemistry (Q2), showcasing the international relevance of his work. He has also contributed significantly to an RSF grant-funded project, reflecting his ability to lead and deliver impactful research. His consultancy project on luminophore powders highlights his contributions to industry-oriented innovation. With an h-index of 4 on Scopus, his work is gaining growing citations and recognition within the scientific community. Currently nominated for the Best Researcher Award under the International Chemical Scientist Awards, his academic and research achievements underscore his dedication to excellence. These recognitions mark the foundation of a promising and influential scientific career.

Publication Top Notes

Navruzbek Habibullayev is a promising and impactful early-career researcher with significant achievements in solid-state chemistry. His research is already contributing to advanced materials science, with publications in respected journals and participation in industry-relevant projects. While his profile is still developing in terms of global recognition, leadership roles, and citation impact, his dedication, emerging contributions, and applied focus make him a very suitable candidate for the Best Researcher Award. With continued growth and international collaboration, he is poised to become a leading scientist in his field.

Fa-Feng Xu | Materials Chemistry | Chemical Scientist Award

Dr. Fa-Feng Xu | Materials Chemistry | Chemical Scientist Award

assistant researcher, Qinghai Institute of Salt Lakes, Chinese Academy of Sciences inΒ  China.

πŸ”¬ Short BiographyΒ πŸŒΏπŸ’ŠπŸ“š

Dr. Fa-Feng Xu πŸ§ͺ is an accomplished researcher specializing in photonic materials and microlasers. He currently serves as an Assistant Research Fellow at the Key Laboratory of Green and High-End Utilization of Salt Lake Resources, Qinghai Institute of Salt Lakes, Chinese Academy of Sciences πŸ‡¨πŸ‡³. He earned his Ph.D. in Physical Chemistry from the Institute of Chemistry, Chinese Academy of Sciences in 2020 πŸŽ“, following his bachelor’s degree in Material Chemistry from Jilin University in 2014. His postdoctoral work at the same institute focused on material engineering under the supervision of renowned scholars. Dr. Xu’s interdisciplinary research integrates chemistry, materials science, and photophysics to develop advanced optical devices such as microlaser arrays for applications in displays and encryption. With multiple high-impact publications and patents, Dr. Xu is a rising talent in the field of optoelectronic materials 🌟.

PROFILEΒ 

OrcidΒ 

πŸ” Summary of Suitability:

Based on the provided CV, Dr. Fa-Feng Xu is a highly suitable candidate for the Chemical Scientist Award. His academic training and professional journey demonstrate a profound command over physical chemistry, material science, and photochemistryβ€”disciplines central to the chemical sciences. Dr. Xu holds a Ph.D. in Physical Chemistry from the Chinese Academy of Sciences and has engaged in impactful postdoctoral research in materials engineering. He has consistently worked on the synthesis and functionalization of advanced photonic materials, particularly organometallic complexes and organic microlasers, which are at the cutting edge of chemical innovation.

πŸ”Ή Education & ExperienceΒ 

Dr. Xu’s academic journey began at Jilin University, where he earned his Bachelor’s degree in Material Chemistry in 2014 πŸŽ“. He then pursued a Ph.D. in Physical Chemistry at the Institute of Chemistry, Chinese Academy of Sciences, mentored by distinguished professors including Academician Jiannian Yao 🧬. His research focused on photochemistry and organic photonic materials. After earning his doctorate in 2020, Dr. Xu continued as a Postdoctoral Fellow in Material Engineering at the same institute, collaborating with Prof. Yu-Wu Zhong. Since November 2023, he has been serving as an Assistant Research Fellow at the Qinghai Institute of Salt Lakes, Chinese Academy of Sciences, contributing to the sustainable utilization of salt lake resources 🧫. His career reflects deep expertise across disciplines including chemistry, optics, and nanomaterials, shaping innovations in photonic applications πŸ’‘.

πŸ”ΉProfessional Development

Dr. Fa-Feng Xu has developed a robust professional skill set grounded in multidisciplinary science πŸ§ͺ. His expertise spans organic synthesis, materials design, and photonic device fabrication. With a strong foundation in chemistry and materials science, he designs and synthesizes organometallic and liquid crystal systems with high-performance photonic properties 🌈. He is skilled in fabricating organic microlasers and constructing patterned microlaser arrays for advanced applications like laser displays and information encryption πŸ”. Dr. Xu is adept in characterizing materials using techniques such as UV-Vis, SEM, TEM, XRD, and AFM. His practical experience extends to the use of cutting-edge instrumentation including electron beam lithography and femtosecond lasers for device testing. Through collaborations and continuous research, he brings innovation to organic photonics, contributing significantly to applied optical science and advanced materials development 🎯.

πŸ› οΈ Skills & Expertise

Dr. Fa-Feng Xu possesses a diverse set of interdisciplinary research skills that bridge the fields of chemistry, photophysics, and materials science πŸ§ͺπŸ”¬. He is proficient in the synthesis, purification, and analysis of organic and organometallic compounds, including platinum and iridium complexes and liquid crystal systems 🌈. His expertise extends to designing and fabricating organic microlaser arraysβ€”such as microdisks, microspheres, and microplatesβ€”for applications in laser displays and information encryption πŸ–₯οΈπŸ”. Dr. Xu is skilled in preparing polymer-based microstructures using materials like PS and PMMA for high-performance waveguiding and lasing functions ⚑. He is also experienced in constructing and characterizing inorganic nanostructures, such as silver nanowires 🧫. Technically adept, he operates advanced instruments including SEM, TEM, AFM, XRD, and UV-Vis for structural and optical characterization πŸ› οΈ. Furthermore, his familiarity with cutting-edge device fabrication techniquesβ€”such as vacuum deposition, lithography, and femtosecond lasersβ€”enables innovative work at the frontier of organic photonics and materials science πŸš€.

πŸ”¬ Research Focus

Dr. Xu’s research is centered on the intersection of organic photonics, microlasers, and advanced optical materials 🌟. He focuses on the rational design and synthesis of organometallic compounds (notably Pt and Ir complexes), liquid crystal systems, and polymeric microstructures for photonic applications. His work includes fabricating two-dimensional microcrystals and wavelength-tunable microlaser arrays, which find use in full-color laser displays and encrypted information systems πŸ–₯οΈπŸ”’. Dr. Xu also explores waveguiding phenomena and the development of photonic materials with thermal and optical responsiveness, bridging chemistry, optics, and device engineering. His contributions reflect a broader interest in next-generation optoelectronics, nonlinear optics, and nanostructured materials. The integration of organic systems into functional devices highlights his forward-thinking approach in applied physical chemistry and materials innovation πŸ”¬βœ¨.

πŸ† Awards & Recognitions

  • πŸ₯‡ Excellent Paper Certificate, 8th CAST Excellent Scientific Paper Selection Program

  • πŸŽ“ Merit Student, University of Chinese Academy of Sciences (UCAS), 2014–2015

  • πŸ† Outstanding Student Leader, UCAS, 2015–2016

  • πŸ’° Academic Scholarships, UCAS (2014–2019)

  • πŸŽ–οΈ National Encouragement Scholarships, Jilin University (2010–2012)

  • 🌟 Excellence Scholarship Student, Jilin University, 2010–2011

Publications & Citations πŸ“š

  1. πŸ“ Organoplatinum(II) Cruciform: A Versatile Building Block to Fabricate 2D Microcrystals with Full-Color and White Phosphorescence and Anisotropic Photon Transport, Angew. Chem. Int. Ed. πŸ“… 2022 | πŸ” Cited by: [citation data needed] πŸŒˆπŸ“Έ

  2. πŸ“ Wavelength-Tunable Single-Mode Microlasers Based on Photoresponsive Pitch Modulation of Liquid Crystals for Information Encryption, Research πŸ“… 2020 | πŸ” Cited by: [citation data needed] πŸ”’πŸ“‘

  3. πŸ“ Flat-Panel Laser Displays Based on Liquid Crystal Microlaser Arrays, CCS Chem. πŸ“… 2020 | πŸ” Cited by: [citation data needed] πŸ–₯️🎯

  4. πŸ“ Thermo-Responsive Light-Emitting Metal Complexes and Related Materials, Inorg. Chem. Front. πŸ“… 2020 | πŸ” Cited by: [citation data needed] πŸ”₯πŸ”¬

  5. πŸ“ Molecular Cocrystals with Hydrogen-Bonded Polymeric Structures and Polarized Luminescence, Materials πŸ“… 2022 | πŸ” Cited by: [citation data needed] πŸ’ŽπŸ’‘

  6. πŸ“ Research Progress of Cesium-Based Photonic Materials, J. of Salt Lake Research πŸ“… 2024 | πŸ” Cited by: [citation data needed] πŸ§‚πŸ”

πŸ” Conclusion:

Dr. Xu’s contributions lie at the intersection of synthetic chemistry, optics, and functional materials. His creative solutions to complex challenges in organic photonics and his strong publication and patent record mark him as an emerging leader in chemical research. His profile exemplifies the innovation and interdisciplinary excellence the Chemical Scientist Award aims to recognize.

Chuanlin Wang | Materials Chemistry | Best Researcher Award

Dr. Chuanlin Wang | Materials Chemistry | Best Researcher Award

Director of Smart Construction Major at Shantou University, China.

πŸ”¬ Short BiographyΒ πŸŒΏπŸ’ŠπŸ“š

Dr. Chuanlin Wang πŸŽ“ is a distinguished civil engineer and researcher currently serving as a Lecturer in the Department of Civil and Environmental Engineering at Shantou University, China πŸ‡¨πŸ‡³. With a strong academic background in civil engineering, he earned his Ph.D. from the University of Leeds πŸ‡¬πŸ‡§ and his B.A. from the Dalian University of Technology πŸ‡¨πŸ‡³. His professional focus centers around innovative concrete materials 🧱, particularly in enhancing performance under marine conditions 🌊. Dr. Wang’s work contributes significantly to developing ultra-high-performance concrete, fiber-reinforced composites, and structure enhancement techniques. His impactful research is backed by key provincial grants πŸ§ͺ and has led to numerous peer-reviewed publications πŸ“š in international journals. Passionate about infrastructure durability and sustainability, he explores corrosion mechanisms, admixtures, and prefabricated building technologies. Dr. Wang continues to drive scientific progress in concrete technology, influencing structural resilience and green building practices globally 🌍.

PROFILEΒ 

ORCIDΒ 

πŸ” Summary of Suitability:

Dr. Chuanlin Wang combines top-tier academic credentials (Ph.D. from University of Leeds πŸŽ“) with a proven track record as a Lecturer at Shantou University 🏫. His specialized focus on marine-durable concretes and advanced cementitious composites directly addresses critical infrastructure challenges 🌊🧱. Consistent success in securing competitive provincial grants πŸ’° and leading interdisciplinary teams 🀝 demonstrates both vision and leadershipβ€”key traits of an outstanding researcher.

πŸ“˜ Education & Experience

πŸŽ“ Education:

  • πŸ“˜ Ph.D. in Civil Engineering – University of Leeds, UK (2012.9 – 2016.9)

  • πŸ“— B.A. in Civil Engineering – Dalian University of Technology, China (2007.9 – 2012.6)

πŸ§‘β€πŸ« Professional Experience:

  • 🏫 Lecturer, Department of Civil and Environmental Engineering, Shantou University (2017.2 – Present)

Professional Development πŸš€πŸ“–

Dr. Chuanlin Wang’s professional development reflects a deep dedication to both academic excellence and engineering innovation πŸ—οΈ. After earning his doctoral degree in the UK πŸ‡¬πŸ‡§, he returned to China to serve at Shantou University, where he nurtures talent and leads cutting-edge research in civil engineering 🏒. Over the years, he has built expertise in concrete performance improvement, particularly in challenging marine environments 🌊. His collaborative and interdisciplinary research includes state-funded projects focusing on sulphoaluminate cement, fiber-reinforced materials, and prefabricated structures πŸ§ͺ. With numerous high-impact publications in international journals πŸ“–, Dr. Wang remains engaged in knowledge dissemination and professional growth. His development is marked by a clear trajectory toward enhancing structural durability and resilience, while supporting sustainable infrastructure goals 🌱. Through ongoing grants, mentoring, and academic contributions, he continually upgrades his skills and impact in both educational and research domains πŸ“šπŸ§‘β€πŸ”¬.

Research Focus πŸ”πŸ€–

Dr. Chuanlin Wang’s research focuses on advanced concrete materials within civil engineering 🧱. He is particularly interested in the behavior of concrete exposed to marine environments 🌊, where corrosion and durability are key challenges. His work explores the development of ultra-high-performance concrete (UHPC) and fiber-reinforced materials 🧡 that offer enhanced mechanical properties and longevity. Additionally, Dr. Wang is an expert in sulphoaluminate cement systems, which are known for rapid strength gain and environmental benefits ♻️. His recent studies investigate the impact of salt ions and seawater concentration on cement hydration and durability, making valuable contributions to marine construction technology 🚒. Prefabricated building systems πŸ—οΈ and structural reinforcement techniques are also central to his interests, aligning with global efforts in sustainable and resilient infrastructure development. By integrating materials science and structural design, Dr. Wang advances the frontiers of construction engineering with a focus on performance, sustainability, and innovation 🌍.

Awards and Honors πŸ†πŸŽ–οΈ

πŸ… Awards & Recognitions:

  • πŸ§ͺ 2023: Grant from Guangdong Provincial Natural Science Foundation – Β₯100,000

  • πŸ”¬ 2021: Awarded Guangdong Provincial Junior Innovative Talents Project – Β₯30,000

  • πŸ“‘ Multiple publications in high-impact journals like Materials, Construction and Building Materials, and Journal of Materials in Civil Engineering

Publications & Citations πŸ“š

  1. πŸ“˜ 2025 |Β Seawater-Activated Mineral Synergy in Sulfoaluminate Cement: Corrosion Resistance Optimization via Orthogonal Design πŸ”¬

  2. πŸ“— 2024 | Β Multi-technique Analysis of Seawater Impact on Calcium Sulphoaluminate Cement Mortar πŸ§ͺ

  3. πŸ“˜ 2025 | Β Influence of Seawater and Salt Ions on the Properties of Calcium Sulfoaluminate Cement 🌊

  4. πŸ“™ 2016 |Β Retrofitting of Masonry Walls Using a Mortar Joint Technique; Experiments and Numerical Validation πŸ—οΈ

  5. πŸ“• 2021 | Β Influence of Steel Fiber Shape and Content on the Performance of Reactive Powder Concrete (RPC) 🧡

  6. πŸ“˜ 2021 | Influence of Seawater Concentration on Early Hydration of CSA Cement – A Preliminary Study βš—οΈ

  7. πŸ“˜ 2021 |Seismic Performance of Precast Columns with Two Different Connection Modes 🚧

πŸ” Conclusion:

With a record of groundbreaking research, successful funding, and dedication to education and sustainability, Dr. Wang exemplifies the qualities of a β€œBest Researcher.” His work not only deepens scientific understanding but also delivers practical solutions for resilient, eco-conscious infrastructure πŸŒπŸ†.

 

 

 

 

 

Walid Oueslati | Solids state chemistry | Excellence in Research Award

Assoc. Prof. Dr. Walid Oueslati | Solids state chemistry | Excellence in Research Award

Associate. Professor at ,University of Carthage, Faculty of Science of Bizerte, LR19ES20: Resources, Materials, and Ecosystems (RME), Tunisia.

Dr. Walid Oueslati πŸŽ“ is a distinguished researcher and professor at the University of Carthage, Faculty of Sciences of Bizerte, Tunisia πŸ‡ΉπŸ‡³. With an H-index of 16 πŸ“Š and over 80 publications πŸ“š, his expertise spans environmental science, nanomaterials, and analytical chemistry πŸ§ͺ. A recognized top reviewer πŸ… in multidisciplinary fields, he has significantly contributed to marine pollution studies 🌊, materials science πŸ—οΈ, and sustainability 🌍. His work has been cited over 700 times, reflecting his impact in scientific research πŸ”¬. Dr. Oueslati remains committed to advancing knowledge through peer reviews and editorial contributions ✍️.

Professional Profile
Suitability for the Excellence in Research Award

Dr. Walid Oueslati is highly suitable for an Excellence in Research Award due to his significant contributions to environmental science 🌍, nanomaterials πŸ—οΈ, and analytical chemistry πŸ§ͺ. With 81 publications, an H-index of 16, and 733 citations πŸ“Š, his research has had a notable impact in scientific communities. Recognized as a top peer reviewer with 208 manuscript reviews, his dedication to advancing research through publication, peer evaluation, and editorial roles makes him a strong candidate for such recognition.

EducationΒ πŸŽ“

    • Ph.D. in Chemistry πŸ§ͺ – Specialization in Environmental Science and Nanomaterials
    • Master’s in Analytical Chemistry πŸ“Š – Focus on Material Characterization and Spectroscopy
    • Bachelor’s in Chemistry πŸ›οΈ – Strong foundation in Chemical Sciences

 

Experience πŸ’Ό

  • Professor at the University of Carthage, Faculty of Sciences of Bizerte, Tunisia πŸ‡ΉπŸ‡³
    • Teaching and mentoring students in Analytical Chemistry and Environmental Science
    • Supervising research in nanomaterials and pollution assessment
  • Renowned Researcher πŸ”¬
    • Published 81 research papers in prestigious journals πŸ“š
    • H-index 16 with 733 citations πŸ“ˆ
  • Peer Reviewer & Editor πŸ…
    • Recognized as a top reviewer in multidisciplinary fields
    • Reviewed 208 manuscripts and contributed to editorial boards
  • Expert in Environmental & Material Science 🌍
    • Specialized in marine pollution studies, nanotechnology, and material characterization
    • Investigated heavy metal contamination, soil chemistry, and advanced photocatalytic materials

 

Professional Development πŸš€πŸ“–

Dr. Walid Oueslati πŸ“š has continuously expanded his expertise through extensive professional development. As a top peer reviewer πŸ…, he has evaluated 208 manuscripts, staying updated with the latest research trends πŸ”¬. His editorial contributions ✍️ have strengthened his expertise in environmental science 🌍, nanomaterials πŸ—οΈ, and analytical chemistry πŸ§ͺ. Actively engaging in international conferences 🎀, he collaborates with global researchers 🀝 to advance scientific knowledge. With 81 publications πŸ“„ and 733 citations πŸ“Š, he remains dedicated to innovation and academic excellence. His commitment to mentorship and interdisciplinary research fosters future scientific breakthroughs πŸš€

Research Focus πŸ”πŸ€–

Dr. Walid Oueslati’s research focuses on Environmental Science 🌍, Nanomaterials πŸ—οΈ, and Analytical Chemistry πŸ§ͺ. His work explores marine pollution 🌊, heavy metal contamination ⚠️, and sustainable materials ♻️. He specializes in nanocomposites for water purification πŸ’§, photocatalytic materials for environmental cleanup 🌱, and crystal structure analysis πŸ”¬. His studies on soil and sediment contamination 🏞️ help assess ecological risks. With expertise in spectroscopy and material characterization πŸ“Š, he develops innovative solutions for pollution control. His research contributes to sustainability, green chemistry, and environmental protection, making a significant impact in multidisciplinary scientific fields πŸš€.

Awards & Honors πŸ…πŸŽ–οΈ

    • Top Reviewer Award πŸ… – Recognized as a top reviewer in multidisciplinary research (2017)
    • Highly Cited Researcher πŸ“Š – Over 733 citations in scientific literature
    • Outstanding Research Contribution Award πŸŽ–οΈ – For impactful studies in environmental science and nanomaterials
    • Editorial Board Recognition ✍️ – Served as a reviewer for 208 manuscripts across top journals
    • Academic Excellence Award πŸŽ“ – Honored for significant contributions to analytical chemistry and material science
    • International Conference Speaker 🎀 – Invited to present research findings in global scientific forums

     

     

Publication Top Notes:
  • Multifunctional Chitosan/Montmorillonite/TiOβ‚‚ Nanocomposites πŸ—οΈ – Journal of the Indian Chemical Society (2025) | DOI: 10.1016/j.jics.2025.101606 |
  • Groundwater Frontiers – Techniques and Challenges 🌍 – Earth Sciences (2025) | DOI: 10.5772/intechopen.1003541 |
  • A Critical Review of Clay Minerals for Groundwater Protection and Treatment πŸ’§ – Book Chapter (2024) | DOI: 10.5772/intechopen.1008385 |
  • Uncovering the Possibilities of Ceramic Ba(1βˆ’x)Coβ‚“TiO₃ Nanocrystals ⚑ – Solids (2024) | DOI: 10.3390/solids5030031 |
  • Simulating the Impact of Electron Beam Energy Deposition on Lead Target Temperature ☒️ – Nuclear Analysis (2024) | DOI: 10.1016/j.nucana.2024.100113 |
  • Synthesis Reaction Kinetics, Structural Changes, and Photocatalytic Efficiency of Chitosan–Clay Nanocomposite πŸ”¬ – Solids (2024) | DOI: 10.3390/solids5020015 |

πŸ“Œ Conclusion:

Dr. Walid Oueslati’s research excellence, impactful publications, and dedication to scientific advancements make him a strong candidate for an Excellence in Research Award. His contributions to environmental sustainability, nanomaterials, and analytical chemistry have significantly influenced global research. His commitment to innovation, peer review, and interdisciplinary collaboration further solidifies his eligibility for this prestigious recognition. πŸš€πŸ‘