Vijayalakshmi Pandurangan | Material Science | Women Researcher Award

Dr. Vijayalakshmi Pandurangan | Material Science | Women Researcher Award

Assistant Professor | Vijay Arts and Science | India

Dr. Vijayalakshmi Pandurangan, Assistant Professor at Vijay Arts and Science College, India, is an emerging researcher in nanomaterials and photocatalytic chemistry with a growing body of impactful publications. Her research primarily focuses on the synthesis and application of nanocomposites for energy storage, photocatalytic degradation of organic pollutants, CO₂ reduction, and electrochemical water splitting. She has authored and co-authored over ten peer-reviewed journal papers in reputed international journals such as Ionics, Journal of Materials Research, ChemistrySelect, Microchemical Journal, Electrochimica Acta, and Langmuir. Her studies on multi-component nanocomposites (such as V₂O₅/g-C₃N₄/ZnO and TiO₂/g-C₃N₄/CuFe₂O₄ systems) have demonstrated enhanced photocatalytic activity under visible light, contributing to sustainable environmental remediation strategies. Dr. Vijayalakshmi Pandurangan’s research also extends to nanostructured electrode materials for supercapacitors and electrochemical sensors, with results published in high-impact journals (Impact Factor range: 0.9–13.1). Her collaborative works span interdisciplinary areas including environmental nanotechnology, materials chemistry, and biomedical nanoscaffolds. She has participated in several international and national conferences, presenting her findings on advanced photocatalytic systems and hybrid nanomaterials. Dr. Vijayalakshmi Pandurangan received the Visionary Research Scientist Award (2025) from the UNS Research Council for her contributions to nanoscience. Her research experience includes joint projects with CSIR-NEERI and a funded international research internship (NSTC, Taiwan). With 9 citations, 10 Scopus-indexed documents, and an h-index of 2, she continues to expand her academic footprint through innovative R&D in functional nanomaterials, renewable energy, and environmental sustainability, marking her as a promising scholar in applied nanotechnology.

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

Featured Publications

1. Sivalingam, A. M., Sureshkumar, D. D., & Pandurangan, V. (2025). Cerebellar pathology in forensic and clinical neuroscience. Ageing Research Reviews, 106, 102697. https://doi.org/10.1016/j.arr.2025.102697

2. Anisree, S., Shanmugavelan, P., Vijayalakshmi, P., Kishore, R., & Srivastava, N. (2024). Synthesis, characterization and anticancer screening of novel phenylbenzylidene thiosemicarbazone derivatives. Phosphorus, Sulfur, and Silicon and the Related Elements, 199(4), 267–276. https://doi.org/10.1080/10426507.2024.2330935

3. Vijayalakshmi, P., Shanmugavelan, P., & Mareeswaran, P. M. (2024). Enhanced photocatalytic activity of V₂O₅/g-C₃N₄/ZnO nanocomposite for efficient degradation of amoxicillin, chlorpyrifos and methylene blue. Ionics, 30(12), 8741–8769. https://doi.org/10.1007/s11581-024-05782-0

4. Vijayalakshmi, P., Shanmugavelan, P., Anisree, S., & Mareeswaran, P. M. (2024). Enhanced visible-light Z-scheme photocatalytic degradation of amoxicillin, chlorpyrifos, and methylene blue by Bi₂O₃/g-C₃N₄/ZnO nanocomposite. Journal of Materials Research, 39(22), 3103–3125. https://doi.org/10.1557/s43578-024-01445-y

5. Vinothini, S., Yu, C.-L., Ramasamy, R., Surya, R., Solomon, R. V., Rajadurai, S., Pandurangan, V., Sakthinathan, S., Chen, C.-L., & Chiu, T.-W. (2025). Self-combustion glycine nitrate process prepared CuAlO₂ nanopowder catalyst applied into the carbendazim electrochemical assessment and computational prediction. Langmuir, 41(40), 27360–27380. https://doi.org/10.1021/acs.langmuir.5c03513

Prof. Dr. Wenxing Zhang | Material | Best Researcher Award

Prof. Dr. Wenxing Zhang | Material | Best Researcher Award

Prof. Dr. Wenxing Zhang, Hanshan Normal University, China

Zhang Wenxing, PhD 🧑‍🔬, is a Full Professor specializing in material simulation and design. A 2009 graduate from the Institute of Physics, Chinese Academy of Sciences (Physics) 🎓, and IEMN (CNRS), France (Materials Science) 🇫🇷, he has advanced the fields of nanomaterials and device simulations. Dr. Zhang has authored over 60 SCI papers 📄, holds six patents in China 📜, and published a monograph 📘. He has completed four funded research projects 🔬 and received prestigious awards, including the First Prize for Scientific and Technological Progress in Beijing 🏆 and Shanxi’s Award for Excellent Scientific Papers 🌟.

Professional Profile:

Scopus

Suitability for the Best Researcher Award

Dr. Zhang Wenxing is an outstanding candidate for the Best Researcher Award due to his pioneering work in nanomaterials and device simulations. His exceptional academic and professional achievements underscore his contributions to the advancement of materials science and nanotechnology. Below is a summary of his suitability

Education & Experience:

  • 🎓 2009: PhD in Physics, Institute of Physics, Chinese Academy of Sciences, China
  • 🇫🇷 2009: PhD in Materials Science, IEMN (CNRS), France
  • 🧑‍🏫 Full Professor conducting research in material simulation and nanomaterial design.

Professional Development:

Dr. Zhang Wenxing has made remarkable contributions in the simulation and design of nanomaterials and devices 🌐. His research has been published in top-tier journals in materials science, physics, and chemistry 📚. With over 60 SCI-indexed papers 📑, six patents in China 📜, and one monograph 📘, he stands as a leading expert in his field. Dr. Zhang has led and completed two National Natural Science Foundation of China projects 🇨🇳 and two Guangdong Provincial projects 🌏. His innovations in nanomaterial design continue to push the boundaries of modern technology 🚀.

Research Focus:

Dr. Zhang’s research centers on simulation and design of nanomaterials and devices 🧬. His work bridges physics, materials science, and chemistry 🔗, offering groundbreaking insights into nanomaterial behavior and application. Using computational techniques, he develops innovative solutions for advanced technologies 💻. His focus includes modeling new material properties 🧪 and optimizing nano-devices for improved performance ⚙️. By integrating simulation with experimental design 🔬, Dr. Zhang’s research contributes significantly to the advancement of nanotechnology 🌟, supporting applications in energy, electronics, and material sciences ⚡.

Awards & Honors:

  • 🏆 First Prize for Scientific and Technological Progress, Beijing
  • 🌟 Award for Excellent Scientific Papers, Shanxi Province
  • 📜 Holder of six authorized patents, China
  • 📘 Published one monograph on materials science and simulation
  • 📚 Authored over 60 SCI papers in top journals worldwide

Publication Top Notes:

  • Title: Pd and Pd-B modified g-CN monolayer as innovative sensor and scavenger for CO, NO2, C2H2, and C2H4: A DFT study
    Citations: 3
  • Title: Harnessing a simple ratiometric fluorescent probe for albumin recognition and beyond
    Citations: 1
  • Title: Multi-Band Emission of Pr3+-Doped Ca3Al2O6 and the Effects of Charge Compensator Ions on Luminescence Properties
    Citations: 1
  • Title: Pd, Ag decorated MoSi2N4 monolayer: A potential material for reusable CO and NO gas-sensitive material with high sensitivity
    Citations: 1
  • Title: Boosting the Self-Trapped Exciton Emission in Cs4SnBr6 Zero-Dimensional Perovskite via Rapid Heat Treatment
    Citations: 9

 

Prof. UTPAL JOSHI | Material Technology Awards | Best Researcher Award

Prof. UTPAL JOSHI | Material Technology Awards | Best Researcher Award

Prof. UTPAL JOSHI , Gujarat University , India

Dr. Utpal S. Joshi, an Indian citizen born on July 1st, 1970, is a distinguished physicist with expertise in Condensed Matter Physics and Electronics. He obtained his Ph.D. from Saurashtra University in 1996, focusing on the structural, magnetic, and electrical properties of mixed oxides and oxide superconductors. With a stellar academic record, including a First-Class M.Sc. and B.Sc. from the same institution, Dr. Joshi has established himself as a prominent figure in the field. His professional journey spans prestigious institutions such as Gujarat University, where he currently serves as a Professor in the Department of Physics. Dr. Joshi’s extensive research experience includes visiting scientist positions at renowned establishments like JNCASR in Bangalore and Tokyo Institute of Technology. Throughout his career, he has contributed significantly to functional electronic materials, nanosciences, and the interaction of heavy ions with matter. Dr. Joshi’s expertise also extends to instrument design and building for research laboratories, showcasing his multidimensional capabilities in experimental physics.

Professional Profile:

Scopus

🎓  Education:

Dr. Utpal S. Joshi completed his Ph.D. in Physics from Saurashtra University, Rajkot, India, in 1996. His doctoral research focused on investigating the structural, magnetic, and electrical properties of mixed oxides and oxide superconductors. Prior to his Ph.D., he obtained a Master’s degree in Physics from Saurashtra University in 1992, achieving First Class with Distinction. He began his academic journey with a Bachelor’s degree in Physics from H.&H.B. Kotak Institute of Science, Saurashtra University, Rajkot, India, graduating with First Class honors in 1990.

🏢Professional Experience:

Dr. Utpal S. Joshi has held various prestigious positions throughout his career, contributing significantly to the field of physics. Currently serving as a Professor in the Department of Physics at Gujarat University, Ahmedabad, India, since January 2009, he has been actively involved in research and academic activities. His expertise was further honed during his tenure as an Associate Professor at the same institution from December 2005 to December 2008

Publication Top Notes:

 

Enhanced Quantum Oscillations and Scattering Effect in Quaternary InAlGaN/GaN Two-Dimensional Electron Gas

  • Authors: Karmakar, C., Kaneriya, R.K., Malasi, M., Bhattacharya, A.N., Joshi, U.S.
  • Published Year: 2023
  • Journal: Applied Physics Letters, 122(20), 201601
  • Citations: 1

Magnetic Field Control and Swift Heavy Ion Beam Assisted Tuning of Resistive Switching Properties of BSFO/CFO/LNO Heterostructures

  • Authors: Thankachen, N., Chhaya, U.V., Tripathi, A., Joshi, U.S.
  • Published Year: 2023
  • Journal: Physica Scripta, 98(3), 035829
  • Citations: 1

Broadband Optoelectronic Properties of p-CuCrO2/n-Si Heterojunction Prepared by Pulsed Laser Deposition

  • Authors: Zala, D., Joshi, U., Ray, A.
  • Conference: Proceedings of the International Semiconductor Conference, CAS
  • Published Year: 2023
  • Citations: 0

Dielectric Spectroscopy and Magnetoelectric Coupling in Dilute Fe Substituted Quasi-One-Dimensional Spin Chain Calcium Cobalt Manganite Films

  • Authors: Thankachen, N., Pathak, B.Y., Pandya, R.J., Debnath, A.K., Joshi, U.S.
  • Published Year: 2023
  • Journal: Journal of Vacuum Science and Technology A: Vacuum, Surfaces and Films, 41(1), 013403
  • Citations: 2

120 MeV Au+9 Swift Heavy Ion Irradiation of Pulsed Laser Deposited BaM/LSMO Bilayers

  • Authors: Zinzuvadiya, S., Pandya, N.C., Sengunthar, P., Tripathi, A., Joshi, U.S.
  • Published Year: 2022
  • Journal: Radiation Physics and Chemistry, 193, 109503
  • Citations: 4