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

Junaid Dar | Microstructure Characterization | Best Researcher Award

Mr. Junaid Dar | Microstructure characterization | Best Researcher Award

Junaid Dar at Oregon state univeristy, United States

Mr. Junaid Dar is a research scholar at the School of Mechanical, Industrial and Manufacturing Engineering, Oregon State University, USA, where he focuses on metal additive manufacturing, graphene-metal composites, and laser-based scanning strategies. He holds an M.S. in Mechanical Engineering from the Gwangju Institute of Science and Technology (GIST), South Korea, and a B.Sc. in Industrial and Manufacturing Engineering from UET Lahore, Pakistan. His research contributions span across 3D printing, microfabrication, precision engineering, and optical surface evaluation, with publications in top-tier journals like Advanced Functional Materials, Materials Today Communications, and International Journal of Advanced Manufacturing Technology. He has received the Best Paper Award at ASPEN 2022 in Singapore and is a recipient of prestigious scholarships including the Korean Government Scholarship and PEEF. Mr. Dar brings rich industrial experience from NESPAK and Grays of Cambridge, combining practical insights with cutting-edge research in next-generation manufacturing technologies.

Professional Profile:

GOOGLE SCHOLAR

Summary of Suitability for Best Researcher Award: Mr. Junaid Dar

Mr. Junaid Dar exemplifies the qualities of a top-tier candidate for the Best Researcher Award through his outstanding academic, research, and industrial track record in advanced manufacturing technologies. Currently pursuing his Ph.D. at Oregon State University, he has a solid foundation with advanced degrees from Gwangju Institute of Science and Technology (South Korea) and UET Lahore (Pakistan), demonstrating global research exposure and excellence.

🎓 Education

  • 🧠 Ph.D. in Mechanical Engineering
    Oregon State University, USA (2023–Present) | 📊 CGPA: 3.71/4.00

  • 🧪 MS in Mechanical Engineering
    Gwangju Institute of Science and Technology (GIST), South Korea (2020–2022) | 📊 CGPA: 3.85/4.50

  • 🏭 B.Sc. in Industrial & Manufacturing Engineering
    UET Lahore, Pakistan (2011–2015) | 📊 CGPA: 3.37/4.00

🧪 Research Interests & Expertise

  • 🔩 Metal Additive Manufacturing

  • 📊 Scan Strategies in LPBF (Laser Powder Bed Fusion)

  • 🧱 Metal-Graphene Composites

  • 🔬 Material Characterization & Optical Measurements

  • 🧫 Microfluidic Device Fabrication

🧑‍💼 Research & Work Experience

🏫 Oregon State University (USA)

Graduate Research Assistant – Dec 2022 to Present

  • Laser scan strategies for LPBF

  • Development of metal-graphene composites via Binder Jetting

🏛️ KRISS, South Korea

Research Engineer – Sep 2022 to Nov 2022

  • Development of 300mm Wafer 3D Stacked Inspection Equipment

🧪 UMSL, GIST (South Korea)

Research Assistant – Sep 2020 to Aug 2022

  • Unmanned surface inspection using optical technologies

🧬 M3 Lab, GIST

Research Assistant – Sep 2019 to Aug 2020

  • Fabrication of microfluidic devices and micro-molding processes

🏢 NESPAK, Pakistan

Junior Mechanical Engineer – Jan 2017 to Aug 2019

  • Tender and bid document prep, project estimation, field inspection

🏭 Grays of Cambridge (Pak) Ltd.

Production Engineer – Jul 2015 to Jan 2017

  • Production planning, 5S implementation, product development

🧾 Publications & Patents

📄 Journal Articles

  1. Advanced Functional MaterialsGraphene-Metal Additive Manufacturing (Under preparation)

  2. Journal of Materials Research and TechnologyScan Strategies Review (2025)

  3. IJAMTLapping Surface using Specular Light (2022)

📑 Conference Proceedings

  • M&M 2025, ASPEN 2022, PRESM 2021

🧬 Patent (Under Review)

  • Metal-Graphene Composites in Additive Manufacturing, 2025

🏆 Awards & Achievements

  • 🥇 Best Paper Award, ASPEN 2022, Singapore

  • 🎓 GIST PR Ambassador – Pakistan (2020–2021)

  • 🧭 GIST Student Ombudsperson (2021–2022)

  • 🇰🇷 Korean Government Scholarship Recipient (2020–2022)

  • 🎓 PEEF Scholar (2011–2015, Punjab Education Endowment Fund)

📚 Academic Experience

  • 👨‍🏫 Teaching Assistant

    • Production Engineering (Fall 2023)

    • Intro to Eng. Programming (Spring 2022)

    • Solid Mechanics (Fall 2021)

🛠️ Skills & Tools

  • 💡 Personal Skills: Manufacturing Process Control, Teamwork, Critical Thinking

  • 🖥️ Software: MATLAB, COMSOL, SolidWorks, AutoCAD, LabVIEW

  • 🌐 Languages: Urdu (Native), English (IELTS Band 7), Korean (Level 2)

Publication Top Notes

Field surface roughness levelling of the lapping metal surface using specular white light

CIted : 6

A review on scan strategies in laser-based metal additive manufacturing

Cited : 1

Specular reflection based on-machine surface roughness rating of machined surface

Surface finish levelling of a free form mold surface adopting specular light based vision technique