Karuppiah Nagaraj | Chemistry | Research Excellence Award

Dr. Karuppiah Nagaraj | Chemistry | Research Excellence Award

Saveetha Medical College and Hospital ( SIMATS), India

Dr. K. Nagaraj is an accomplished academician and researcher currently serving as an Assistant Professor at the School of Pharmacy, National Forensic Sciences University, Gandhinagar. He holds postgraduate and doctoral qualifications in Chemistry and has extensive teaching and research experience across premier institutions in India and abroad. His research expertise spans surfactant and polymer metal complexes, biomolecular interactions, anticancer drug development, electron transfer in microheterogeneous media, green nanomaterials, chemical kinetics, and photo-electrocatalysis. Dr. Nagaraj has published extensively in high-impact journals, authored multiple textbooks, contributed numerous book chapters, and filed patents in emerging interdisciplinary domains. He has received several prestigious awards and fellowships for academic and research excellence and actively contributes to scholarly activities through research guidance, professional memberships, and participation in national and international conferences. His work reflects a strong commitment to innovation, sustainability, and translational chemical sciences.

Research Metrics (Google Scholar)

1500
1000
500
100
0

Citations
1389

h-index
21

i10-index
53

Citations

h-index

i10-index

Featured Publications

Assist. Prof. Dr. Dinesh Kulhary | Chemistry | Research Excellence Award

Assist. Prof. Dr. Dinesh Kulhary | Chemistry | Research Excellence Award

Career Point University | India

Dinesh Kulhary is a dedicated researcher and academician whose work spans advanced materials chemistry, crystallography, and functional hybrid perovskites. With an h-index of 3, a portfolio of 7 research documents, and 57 citations across 54 citing documents, he has established a growing scientific footprint in the fields of optoelectronics, photoluminescent materials, energy-harvesting devices, and smart material interfaces. He completed a strong academic journey in chemical sciences, culminating in doctoral research that explored the electrical, optical, and thermal behavior of lead-free organic–inorganic hybrid perovskites for device applications. His professional experience includes teaching and research roles in higher education institutions, where he has contributed to curriculum development and guided emerging scholars. His research interests include single-crystal engineering, humidity sensors, photoluminescent printing materials, 2D/3D hybrid perovskites, photocatalysis, and energy-efficient device fabrication. He has participated in prominent international scientific events, engaged in global collaborations, and published impactful work in reputed journals. His achievements include competitive research awards, travel grants, and recognitions that highlight his contributions to materials science innovation. With a strong commitment to scientific advancement, he continues to explore next-generation functional materials aimed at sustainable technological applications.

Profiles: Scopus | Orcid

Featured Publications

Choudhary, R., Pawar, V., Garg, U., Arora, K., Sharma, N., Dinesh, & Sharma, A. (2025). Enhanced photocatalytic performance of nanomaterial-modified dye sensitized solar cell biosensors for real-time biomedical diagnostics. South Eastern European Journal of Public Health.

Dinesh. (2024). Structural elucidation of electrical and optical properties in lead-free organic-inorganic copper bromide [(CH₃)₄N]₂CuBr₄ single crystals. ChemistrySelect.

Dinesh. (2022). Design of g-C₃N₄/BaBiO₃ heterojunction nanocomposites for photodegradation of an organic dye and diclofenac sodium under visible light via interfacial charge transfer. ChemistrySelect.

Dinesh, S. M. A., Singh, D., Karn, A., & Khan, A. (n.d.). Chemopreventive effects of lupeol and lupeol nanoparticles. In Futuristic Trends in Chemical Material Sciences & Nano Technology (Vol. 3).

Devthade, V., Dinesh, & Umare, S. S. (n.d.). Role of precursors on photocatalytic behavior of graphitic carbon nitride. Conference paper.

Uma V | Materials Science | Women Researcher Award

Dr. Uma V | Materials Science | Women Researcher Award

Government Thirumagal Mill’s College | India

Dr. V. Uma is a dedicated physics educator and researcher specializing in advanced functional materials, particularly multiferroic nanomaterials and thin-film systems. She serves as a Guest Lecturer in the Department of Physics at Government Thirumagal Mills College, where she has handled extensive teaching responsibilities across UG and PG programs, guided numerous student projects, and delivered lectures in areas such as material science, microprocessors, electronics, nuclear physics, and numerical methods. Her academic background includes a Ph.D. in Physics focused on the synthesis and characterization of bismuth iron oxide nanomaterials, supported by an M.Phil. in Physical Sciences, M.Sc. in Physics, and a B.Ed. in Physical Science, along with qualification in the State Eligibility Test. Her research expertise covers nanomaterial synthesis using sol-gel, hydrothermal, microwave combustion, and thin-film deposition techniques, along with characterization skills in XRD, FTIR, UV, VSM, SEM, dielectric studies, and electrochemical analysis. She has published impactful research contributions with a citation count of 8, two indexed documents, and an h-index of 2, demonstrating emerging recognition within the scientific community. She has actively participated and presented in several national and international conferences in materials science. Her work reflects strong commitment toward innovative research, quality teaching, and the advancement of materials science applications.

Profile: Scopus

Featured Publications

Uma, V., & Seenuvasakumaran, P. (2023). Synthesis, structural, microstructural, optical, magnetic and dielectric properties of Nd-doped multiferroic Bismuth iron oxide. Results in Materials. https://doi.org/10.1016/j.rinma.2022.100359

Venkatesan K | Chemistry | Best Researcher Award

Assoc. Prof. Dr. Venkatesan K | Chemistry | Best Researcher Award

CVR College of Engineering | India

Dr. K. Venkatesan is an accomplished researcher and academician in the field of Chemistry, currently serving as an Assistant Professor at CVR College of Engineering, Hyderabad. He holds a Ph.D. in Chemistry from VIT University, Vellore, and an M.Sc. in Chemistry from Annamalai University. With extensive teaching and research experience, he has contributed significantly to organic and medicinal chemistry, focusing on the synthesis of heterocyclic compounds and the development of biologically active molecules using green and sustainable approaches. His expertise includes molecular modeling, QSAR studies, and ultrasound or microwave-assisted synthesis techniques. Dr. Venkatesan has published 29 high-quality research papers in reputed international journals indexed in Scopus and Web of Science, accumulating 268 citations, an h-index of 9, and an i10-index of 8. His studies emphasize environmentally friendly methodologies, catalysis, and bioactive molecule design with pharmaceutical relevance. He has actively presented papers at various international conferences and has organized faculty development programs in chemistry and material sciences. Recognized for his research excellence, he continues to explore innovative synthetic routes and bio-evaluations of novel compounds contributing to the advancement of chemical sciences and drug discovery.

Profile: Google Scholar | Scopus | Orcid

Featured Publications

Reshma, H., Shaik, H., Venkatesan, K., Venugopal, A., Kadeer, M., & Puppala, V. S. (2025). A review on nanomaterials: Introduction, synthesis, characterization, and applications. Chemical Papers, 79, 4075–4085. https://doi.org/10.1007/S11696-025-04107-3

Parasuraman, K., Jayaraman, S., Selvarasu, U., Venkatesan, K., & ShanmugaPriya, R. (2025). An effective, recyclable, bi-functionalized ionic liquid catalyzed solvent, metal, base free one-pot multicomponent reaction. Monatshefte für Chemie – Chemical Monthly, 156, 329–335. https://doi.org/10.1007/s00706-025-03297-6

Basha, N. H., Jagadish, T., Karthikeyan, P., Balu, K., Durai, M., Afzal, M., Ahn, Y. H., Pasupathi, M., & Venkatesan, K. (2025). Ultrasound-assisted synthesis of polyfunctionalized pyridine derivatives catalyzed by silica-supported perchloric acid: In vitro anticancer studies and molecular docking. Russian Journal of Bioorganic Chemistry, 51, 932–946. https://doi.org/10.1134/S1068162024606451

Venkatesan, K., Shaik, H., Kadeer, M., Suryanarayana, V., & Karthikeyan, P. (2025). Mini review on total synthesis of antihypertensive drug Telmisartan. Russian Journal of General Chemistry, 95, 1924–1935. https://doi.org/10.1134/S1070363225603072

Venkatesan, K., Abdelsalam Zaki, M. E. S., Basha, N. H., Shaik, H., Chang, S. K., Wong, L. S., Karthikeyan, P., & Gomha, S. M. (2025). Magnetic nanoparticle-catalysed one-pot multicomponent reactions (MCRs): A green chemistry approach. Catalysts, 15(9), 800. https://doi.org/10.3390/catal15090800

Gyan Singh | Chemistry | Best Researcher Award

Dr. Gyan Singh | Chemistry | Best Researcher Award

Indian Institute of Technology (IIT) Delhi| India

Dr. Gyan Singh is a distinguished Postdoctoral Researcher at the Department of Chemistry, Faculty of Sciences, Universidad de Tarapacá, Chile, supported by the FONDECYT fellowship from Agencia Nacional de Investigación y Desarrollo (ANID), Chile. His research focuses on conducting polymers, nanomaterials, electrode materials, nanocomposites, and supercapacitors. He earned his Ph.D. in Nanotechnology from Jamia Millia Islamia, following an M.Phil. in Chemistry, M.Sc. in Applied Chemistry (Gold Medalist), and B.Sc. in Science. His professional experience includes roles at IIT Delhi and Jamia Millia Islamia, where he contributed significantly to projects on supercapacitor electrode development and advanced energy storage devices. Dr. Singh’s scholarly contributions include over 15 international publications, 3 book chapters, and several works under review in reputed journals such as Energy Technology, ChemistrySelect, and Journal of Energy Storage. His research has collectively received over 400 citations, with an h-index of 10 and 20+ documents indexed in international databases. His expertise extends to the fabrication of electrochemical devices and sustainable energy materials. Recognized for academic excellence and innovation, Dr. Singh continues to contribute to sustainable nanomaterial-based energy systems for environmental and industrial applications.

Profiles: Google Scholar | Orcid

Featured Publications

Singh, G., Kumar, Y., & Husain, S. (2020). High charge retention and optimization of polyaniline–titanium dioxide nanoparticles composite nanostructures for dominantly stable pseudocapacitive nature. Journal of Energy Storage, 31, 101660.
https://doi.org/10.1016/j.est.2020.101660

Singh, G., Kumar, Y., & Husain, S. (2021). Improved electrochemical performance of symmetric polyaniline/activated carbon hybrid for high supercapacitance: Comparison with indirect capacitance. Polymers for Advanced Technologies, 32(11), 4490–4501.
https://doi.org/10.1002/pat.5381

Liu, H., Papangelakis, V. G., Alam, M. S., & Singh, G. (2003). Solubility of hematite in H₂SO₄ solutions at 230–270 °C. Canadian Metallurgical Quarterly, 42(2), 199–207.
https://doi.org/10.1179/cmq.2003.42.2.199

Singh, G., Kumar, Y., & Husain, S. (2023). Fabrication of high energy density symmetric polyaniline/functionalized multiwalled carbon nanotubes supercapacitor device with swift charge transport in different electrolytic systems. Journal of Energy Storage, 65, 107328.
https://doi.org/10.1016/j.est.2023.107328

Singh, G., Kumar, Y., & Husain, S. (2024). Nickel ferrite doped polyaniline composites: Synthesis and analysis for a high‐performance symmetric pseudo‐supercapacitor. Energy Storage, 6(1), e525.
https://doi.org/10.1002/est2.525

Sathyamoorthy B | Materials Science | Best Researcher Award

Assist. Prof. Dr. Sathyamoorthy B | Materials Science | Best Researcher Award

Dayananda Sagar University | India

Dr. B. Sathyamoorthy is a dedicated researcher and academician specializing in experimental condensed matter physics, with a strong focus on magnetism and nanomagnetic materials. His scholarly journey spans advanced studies on ferrites, perovskites, and garnets, contributing significantly to the understanding of disordered systems at low temperatures. He is passionate about exploring nanoscale magnetism and has established expertise in both the synthesis and characterization of complex magnetic systems. Currently, he is engaged in teaching and research at a reputed institution while also leading sponsored projects that integrate technology with sustainable development for local communities.

Professional Profile

Scopus

Education

Dr. B. Sathyamoorthy holds a doctorate in experimental condensed matter physics, where his research centered on structural, electrical, and magnetic properties of nanoparticle-based materials. He also completed a master’s degree in physics, further refining his theoretical and experimental skills. His academic foundation was strengthened through undergraduate studies in physics, complemented by specialized training in computer applications. Beyond formal education, he has undertaken multiple research projects and training programs, including theoretical and experimental studies on atmospheric reactions, chalcogenide glasses, and nanoparticle synthesis. This multidisciplinary academic background has enabled him to develop an in-depth understanding of nanomaterials and magnetic systems.

Professional Experience

Dr. Sathyamoorthy is serving as an Assistant Professor in the Department of Physics at a leading university, where he is actively involved in teaching, mentoring, and research. His career includes leading sponsored projects that focus on technological interventions for sustainable livelihoods in collaboration with local communities. During his doctoral research, he gained extensive hands-on experience in experimental condensed matter physics, working on diverse magnetic and nanoscale systems. His professional journey reflects a blend of academic excellence, research innovation, and societal impact, making him a committed contributor to the advancement of physics and its applications in real-world challenges.

Awards and Recognition

Dr. Sathyamoorthy has been recognized for his academic and research contributions through prestigious fellowships and awards. He received a government-sponsored research fellowship that supported his doctoral work and provided opportunities to deepen his expertise in physics. His excellence was further acknowledged when he won the Best Poster Presentation award at an international conference on synthetic materials, where his innovative work on nanomagnetism was highly appreciated. He is also associated with international professional bodies such as the American Physical Society and contributes as a reviewer for reputed journals, highlighting his standing in the global scientific community.

Research Skills

Dr. Sathyamoorthy has cultivated strong research expertise in the synthesis and characterization of nanomaterials, particularly in perovskite oxides, ferrites, and garnets. His skills span multiple synthesis techniques, including sol-gel, auto-combustion, co-precipitation, and solid-state methods. He is proficient in advanced characterization techniques such as XRD, FESEM, EDAX, FTIR, PPMS, and dielectric measurements, enabling him to analyze structural, electrical, and magnetic behaviors comprehensively. His work often addresses disordered magnetic phenomena, Griffiths phases, and magneto-electric coupling at low temperatures. These skills not only reflect his depth of scientific understanding but also his ability to contribute to advancements in nanoscience and materials research.

Notable Publications

Field-induced ferromagnetism and enhanced electrical conductivity in sol-gel synthesized Sm0.5Ca0.25Sr0.25CoO3 nanoparticles
Author: B. Sathyamoorthy, G. Chandrasekaran
Journal: Materials Science and Engineering B
Year: 2026

Conclusion

Dr. Sathyamoorthy is an accomplished physicist whose career reflects a balance of academic rigor, innovative research, and community-focused projects. His deep expertise in nanomaterials and condensed matter physics equips him to make impactful contributions in both teaching and research. Through collaborations, scholarly publications, and mentorship, he continues to advance scientific knowledge while fostering the growth of future researchers. His dedication to integrating technology with sustainable practices also demonstrates his commitment to societal development. With a strong foundation in both theory and experimentation, he remains driven to contribute meaningfully to the global scientific and academic community.

Pragnesh Dave | Chemistry | Distinguished Scientist Award

Prof. Dr. Pragnesh Dave | Chemistry | Distinguished Scientist Award

Sardar Patel University | India

Prof (Dr) Pragnesh N Dave is a distinguished academic and researcher in the field of Chemistry with over two decades of teaching, research, and leadership experience. He has served at prestigious institutions, contributing significantly to the growth of chemical sciences and curriculum development. His academic journey has been marked by dedication to advancing knowledge in polymer science, nanotechnology, and green chemistry. With extensive contributions to scientific research, publications, and student mentorship, he has established himself as a respected figure in both national and international academic circles, consistently promoting the importance of innovation and sustainability in scientific education and practice.

Professional Profile

Orcid

Education

Prof (Dr) Pragnesh N Dave pursued advanced studies in Chemistry, specializing in Polymer Science, which formed the foundation of his research career. He obtained his doctoral degree in Polymer Science from Sardar Patel University, where he gained strong expertise in synthesis, material characterization, and emerging fields within chemistry. His academic path reflects a deep commitment to science and innovation, equipping him with the knowledge to advance studies in green technology, nanomaterials, and environmental chemistry. Through continuous academic engagement, he expanded his vision to bridge scientific knowledge with practical applications, nurturing future generations of scientists through structured learning and impactful research.

Professional Experience

Prof (Dr) Pragnesh N Dave has held significant academic and administrative roles across reputed universities. He served as Professor and Head in the Department of Chemistry at K S K V Kachchh University, where he also contributed as Vice Chancellor and Acting Registrar. At Nirma University, he played a vital role in developing Engineering Chemistry curricula and establishing a Nanotechnology course. Currently, he is a Professor in the Department of Chemistry at Sardar Patel University. His professional career reflects a balance of teaching, research, and academic leadership, with major contributions to curriculum design, laboratory development, and fostering interdisciplinary research initiatives.

Awards and Recognition

Prof (Dr) Pragnesh N Dave has received numerous awards and honors in recognition of his outstanding academic contributions. He has been repeatedly acknowledged by leading scientific bodies, including recognition as one of the top scientists globally by Stanford University. His achievements include prestigious fellowships, visiting scientist appointments, and national-level awards that highlight his commitment to teaching, research, and scientific advancement. Notably, he has been honored by the Gujarat Science Academy for excellence in postgraduate teaching and received accolades from prominent science academies for his educational leadership. These recognitions affirm his dedication to advancing chemistry and nurturing future researchers.

Research Skills

Prof (Dr) Pragnesh N Dave has extensive research expertise in polymer science, nanotechnology, and green chemistry. His work focuses on the synthesis and characterization of nanoparticles, green fuels, and removal of heavy metals from wastewater. He has guided multiple doctoral and postgraduate students, advancing applied research in environmental sustainability and material sciences. His research has been supported by various national funding agencies, enabling impactful studies that combine theoretical insights with practical solutions. He has published widely in reputed international journals, authored books, and contributed chapters, reflecting his strong capability in advancing research across diverse areas of chemical sciences.

Notable Publications

Density Functional Theory (DFT) Study of LaMn0.4Fe0.6O3 Perovskite Oxide
Author: Taruna Likhariya; Pragnesh N. Dave; Rita Kakkar; Ajay Lohar
Journal: ChemistrySelect
Year: 2025

Synthesis, Characterization, and Effective Adsorption of Naproxen Sodium from Wastewater Using Eco-Friendly Gum Acacia-Grafted-Poly(N,N-Dimethylacrylamide)/CoFe2O4 Hydrogel Nanocomposite
Author: Pragnesh N. Dave; Sanjay Bamaniya
Journal: Water, Air, & Soil Pollution
Year: 2025

LaCoxMn1−xO3 Perovskite Oxide: Its Synthesis and Catalytic Application in Thermal Study of AP
Author: Pragnesh N. Dave; Taruna Likhariya; Shalini Chaturvedi
Journal: Chemical Engineering & Technology
Year: 2025

Covalent Organic Frameworks (COFs) as Advanced Carriers for Corrosion Prevention: Cutting‐Edge Advances and Promising Future Opportunities
Author: Pallavi Singh; Pragnesh N. Dave
Journal: ChemNanoMat
Year: 2025

Glutaraldehyde crosslinked chitosan-β-cyclodextrin/ZnO composite for the effective adsorption of Congo red anionic dye: A glimpse into adsorption performance and ANN modeling
Author: Ruksana Sirach; Pragnesh N Dave
Journal: Carbohydrate Polymer Technologies and Applications
Year: 2025

Conclusion

Prof (Dr) Pragnesh N Dave’s career exemplifies a blend of academic excellence, research innovation, and leadership in chemical sciences. With vast experience in teaching, mentoring, and curriculum development, he has contributed significantly to higher education and research. His prolific publications, authorship of books, and active engagement in scientific forums demonstrate his role as a thought leader in chemistry. Recognized nationally and internationally, his awards and fellowships highlight his influence on scientific advancement. Through his dedication to innovation and sustainable practices, he continues to inspire the academic community while shaping the future of chemistry education and research in meaningful ways.

Sunil Kumar | Materials Science | Best Researcher Award

Dr. Sunil Kumar | Materials Science | Best Researcher Award

L.N.T. College, B.R.A. Bihar University | India

Dr. Sunil Kumar is a dedicated researcher and academic in the field of chemistry, with a particular focus on nanomaterials, nanotechnology, and energy-related materials. His work bridges the gap between fundamental chemical sciences and applied technologies, especially in the areas of solar photovoltaics, electrochemical devices, and polymer electrolytes. Over the years, he has contributed significantly through research publications, book chapters, and editorial work. His academic leadership has been instrumental in fostering collaborative research environments. Dr. Kumar’s commitment to innovation, sustainable technologies, and the advancement of science has established him as a respected figure in both national and international research communities.

Professional Profile

Google Scholar

Education

Dr. Sunil Kumar completed his academic journey with a strong foundation in chemistry, progressing through undergraduate and postgraduate studies before obtaining a doctoral degree in polymer chemistry and materials science from a premier Indian Institute of Technology. His education combined theoretical knowledge with practical research, enabling him to develop expertise in advanced materials and their applications. During his academic training, he engaged in projects related to nanomaterials, polymer electrolytes, and solar cell technologies. His exposure to interdisciplinary fields has allowed him to integrate concepts from materials science, energy research, and chemical engineering, shaping his future contributions to sustainable technology solutions.

Professional Experience

Dr. Sunil Kumar has served in various academic and research roles, contributing to both teaching and advanced scientific investigation. As Head of the Department of Chemistry at a reputed college affiliated with a major Indian university, he has been actively involved in curriculum development, research guidance, and fostering academic excellence. He has collaborated with scientists across disciplines to work on projects related to nanotechnology, renewable energy materials, and electrochemical systems. His professional experience includes mentoring students, organizing scientific events, and contributing to institutional committees aimed at improving research quality, promoting digital learning, and expanding international academic collaborations.

Awards and Recognition

Dr. Sunil Kumar’s research and academic contributions have earned him multiple prestigious awards from universities and professional bodies. He has been honored for excellence in research, leadership in academic development, and significant contributions to chemistry. His recognition includes inclusion in lists highlighting top educators and innovators in India, as well as institutional awards celebrating his impact on scientific advancement. Beyond formal awards, his work has received appreciation through citations, conference invitations, and editorial responsibilities. These accolades reflect his sustained dedication to advancing chemical sciences and his role in shaping the next generation of researchers in the field of materials chemistry.

Research Skills

Dr. Sunil Kumar possesses a diverse range of research skills in the fields of nanomaterials, nanotechnology, and energy materials. His expertise includes developing and characterizing polymer electrolytes, redox polymers, and functional materials for solar cells and energy storage devices. He is skilled in experimental design, data analysis, and the integration of interdisciplinary concepts to solve practical problems. His work extends to the preparation of advanced materials for chemical sensors and renewable energy technologies. These skills are complemented by his ability to collaborate with researchers globally, manage multi-stage projects, and contribute to peer-reviewed publications and book chapters in international platforms.

Notable Publication

Ternary ZnCdS Sensitized Photoanode Solar Cell with Polyurethane Electrolyte Bearing Amino – rGO and Pendant Anion Segments
Author: Sunil Kumar; Abhinay Thakur; Manish Kumar; Manickam Selvaraj; Mohammed A. Assiri
Journal: Surfaces and Interfaces
Year: 2025

Sulfonate/sulfonic-acid pendant chain containing reactive polymer composites for green energy technologies: future prospects
Author: Apoorv Saraswat; Sunil Kumar
Journal: Polymer Bulletin
Year: 2025

Mechanistic Insights in Surface Engineering of Micro‐/Nanocomposite Phase Change Materials for Thermal Energy Storage: A Review
Author: Laxman Singh; Saravanakumar Balakrishnan; Joseph Johnson William; Sheikdawood Parveen; Ponnachiyur Aruchamy Periasamy; Rajeev Kumar; Anshuman Srivastava; Sunil Kumar; Amit Kumar Shringi; Dimple Kumari et al.
Journal: Advanced Energy and Sustainability Research
Year: 2025

Exponential developments of quantum dots ecosystem for solar energy conversion and photocatalytic reactions: From photoanode design to renewable energy applications
Author: Sunil Kumar; Niranjan Patra; Ismail Hossain; Abhinay Thakur; T. Jaseetharan; Navinchandra Gopal Shimpi
Journal: Materials Research Bulletin
Year: 2025

Emerging Materials for Photodegradation and Environmental Remediation of Micro- and Nano-Plastics: Recent Developments and Future Prospects
Author: Sunil Kumar
Journal: Wiley (Book)
Year: 2025

Conclusion

Dr. Sunil Kumar stands out as a versatile researcher and academic leader whose work spans innovative material development and sustainable energy applications. His career reflects a balance between scientific discovery and its real-world impact, with contributions that have advanced both academic understanding and technological solutions. His leadership in departmental growth, commitment to collaborative research, and ability to inspire students have strengthened his role in the academic community. Through his work, he continues to contribute to the global scientific dialogue, ensuring that advancements in chemistry translate into practical applications that address pressing challenges in energy and environmental sustainability.