Feng Wang – Energy Materials – Best Researcher Award

Ms. Feng Wang - Energy Materials - Best Researcher Award 

Guilin University of Electronic Technology - China

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🎓 Early Academic Pursuits

Ms. Feng Wang embarked on her academic journey at Wuhan University of Science and Technology, where she earned her Bachelor’s degree in Inorganic Non-Metallic Materials in 2011. She deepened her expertise with a Master’s degree in Materials Physics and Chemistry from Guilin University of Electronic Science and Technology, completed in 2014. Her academic pursuits culminated in a Ph.D. from Beihang University in 2018, where she specialized in Materials Physics and Chemistry, laying the groundwork for her distinguished career in energy materials.

💼 Professional Endeavors

Ms. Feng Wang began her professional career as a Lecturer at Guilin University of Electronic Science and Technology in 2018. In 2022, she advanced to the role of Associate Professor, where she has continued to make significant contributions to materials science research. Her professional endeavors have focused on hydrogen storage alloys and energy materials, bridging theoretical research and practical applications to address global energy challenges.

🔬 Contributions and Research Focus

Ms. Wang’s research focus is centered on energy materials, particularly hydrogen storage alloys. She has been the lead investigator in the National Natural Science Foundation of China Youth Project, which explored the synergistic catalytic hydrogen absorption/desorption processes of ZrCo alloys. Her contributions include elucidating the mechanisms of hydrogen storage and developing advanced V-Ti and V-Pd-based alloys with optimized microstructure and hydrogen permeation performance. These projects have not only advanced the understanding of energy materials but also provided critical insights for future sustainable energy technologies.

🌍 Impact and Influence

The impact and influence of Ms. Feng Wang’s work are evident through her involvement in nationally funded projects and her contributions to advancing the field of energy materials. Her research has provided critical insights into the relationship between phase equilibrium, microstructure, and hydrogen storage performance, influencing both academic and industrial applications. Her collaborations with research teams on national projects underscore her role as a leader in the field.

🏆Academic Cites

Ms. Wang’s research has been widely recognized and cited in reputable journals, reflecting the importance of her contributions to energy materials. Her findings on hydrogen storage alloys have been referenced by scholars and practitioners, establishing her as a prominent figure in this area. The high citation rate of her work underscores her influence on the scientific community and the practical relevance of her research.

🌟 Legacy and Future Contributions

Looking ahead, Ms. Feng Wang aims to further advance the field of energy materials through innovative research and collaboration. Her future contributions are expected to focus on designing and optimizing materials with enhanced hydrogen storage capabilities, addressing critical energy needs. As an educator, she continues to mentor young scientists, ensuring that her legacy of innovation and dedication to energy materials will inspire future generations.

📝Energy Materials

Ms. Feng Wang’s expertise in energy materials is demonstrated through her groundbreaking research on hydrogen storage alloys. Her work on the development of advanced materials with optimized hydrogen absorption properties has significantly advanced the field of energy materials. As a leading researcher, Ms. Wang’s ongoing efforts promise to make lasting contributions to the development and application of energy materials for sustainable energy solutions.

Notable Publication


📝Article Title: Enhancement for Hydrogen Transport Properties by Tailoring Lattice Matching in V-Pd-Fe Ternary Alloy Membrane

Authors: Wu, C., Lai, H., Wang, F., She, Y., Wang, Z.

Journal: Journal of Alloys and Compounds

Year: 2024

Citations: 1


📝Article Title: Strongly Coupled C@MoSe2@OMWCNT Heterostructure as an Anode for Sodium-Ion Batteries

Authors: Yang, Y., Wang, F., Biang, M., Yin, S.-F., Qiu, R.

Journal: Journal of Alloys and Compounds

Year: 2024

Citations: 1


📝Article Title: Controllable Preparation and Sodium Storage Properties of Sb2Te3–Te Heterojunction

Authors: Jia, S., Jiang, S., Li, S., Qin, H., Deng, J.

Journal: Nano

Year: 2024

Citations: 0


📝Article Title: Realizing Dual Functions Through Y2O3 Modification to Enhance the Electrochemical Performance of LiNi0.8Co0.1Mn0.1O2 Material

Authors: Wang, X., Wang, F., Zheng, M., Liu, P., Liu, D.

Journal: Coatings

Year: 2024

Citations: 0


📝Article Title: Influence of Zr Addition on the Microstructure and Hydrogenation Kinetics of Ti50−xV25Cr25Zrx (x = 0, 5, 7, and 9) Alloys

Authors: Zeng, Q., Wang, F., Li, Z., Wang, J., Wang, Z.

Journal: Materials

Year: 2024

Citations: 0

Ramesh Kumar Raji – Energy Storage Supercapacitors – Best Researcher Award 

Dr. Ramesh Kumar Raji - Energy Storage Supercapacitors - Best Researcher Award 

United Arab Emirates University - United Arab Emirates 

Author Profile

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🎓 Early Academic Pursuits

Dr. Ramesh Kumar Raji’s academic journey began with an exceptional foundation in physics and materials science. Completing his Bachelor of Science in Physics from Periyar University with distinction, he further honed his expertise by earning a Master’s degree in Physics (Materials Science) from Anna University. His master’s thesis on the “Growth of 4-Nitrophenol bulk single crystal by Vertical Bridgman technique” showcased his innovative approach and passion for crystallography. Building on this strong base, Dr. Raji pursued his Ph.D. in Physics at Anna University, where his dissertation focused on “Investigations on Structural, Optical, Magnetic, and Dielectric Properties of Rare Earth/Transition Metal Doped Lanthanum Ferrite Perovskites.” His academic excellence was evident in his highly commended thesis and distinction-level coursework performance.

💼 Professional Endeavors

Dr. Raji has held significant academic and research positions throughout his career. He currently serves as a Postdoctoral Research Associate at the United Arab Emirates University, where he focuses on the fabrication of high-power-density Ti3C2Tx MXene electrode materials for energy storage supercapacitors. His previous role as an Assistant Professor and Researcher at Surana College Autonomous, Bangalore, India, further cemented his reputation as a dedicated educator and materials scientist. Dr. Raji’s research spans various cutting-edge topics, including the synthesis of 2D MXenes, covalent-organic frameworks, and advanced luminescent materials.

🔬 Contributions and Research Focus

Dr. Raji’s research has significantly contributed to advancements in energy storage supercapacitors and multiferroic materials. His Ph.D. work demonstrated intriguing changes in magnetization and dielectric behavior in doped LaFeO3 systems, positioning these materials as candidates for magnetic memory, high-frequency, and photocatalytic applications. His recent work on Ti3C2Tx MXenes has explored their potential for eco-friendly, high-performance supercapacitors. Other contributions include studies on Pr3+ doping in LaFeO3 nanocrystals, hybrid electrode fabrication, and the development of efficient red-emitters for WLEDs.

🌍 Impact and Influence

Dr. Raji’s impact extends across academia and industry, with his work bridging fundamental research and practical applications. His innovative findings in energy storage supercapacitors have influenced material synthesis techniques and performance evaluation in electrochemical devices. As an editorial board member for multiple international journals, he has contributed to the scientific discourse, mentoring young researchers and enhancing the global visibility of emerging research.

🏆Academic Cites

Dr. Raji’s research output is well-recognized, with citations in reputable journals reflecting the quality and impact of his work. His Google Scholar, ResearchGate, and ORCID profiles document an extensive body of research, including highly cited papers on multiferroic materials, MXenes, and luminescent properties of advanced materials. These citations underscore the significance of his contributions to materials science and energy storage technologies.

🌟 Legacy and Future Contributions

Dr. Raji’s legacy lies in his groundbreaking work on multiferroics and energy storage supercapacitors. His commitment to exploring eco-friendly and high-efficiency materials positions him as a leading figure in the field. Moving forward, he aims to delve deeper into the role of in-situ and operando techniques in unraveling supercapacitor phenomena and expanding the application spectrum of MXenes. His dedication to innovation and education ensures that his contributions will shape the future of materials science and energy storage technologies.

📝Energy Storage Supercapacitors

Dr. Raji's ongoing work on energy storage supercapacitors exemplifies his dedication to addressing global energy challenges. By pioneering the synthesis of advanced MXene-based materials and exploring novel electrode architectures, he has contributed to the development of efficient, sustainable, and scalable energy solutions. These efforts not only highlight his scientific acumen but also promise to drive future advancements in renewable energy and storage systems.

Notable Publication


📝Investigating the Impact of Gd³⁺ Ion Substitution in Sr₂FeTiO₆: Insights into Magnetic, Electrical, and Structural Properties

Authors: Punitha, J.S., Raji, R.K., Kumar, K.S., Hamed, F., Nataraj, A.

Journal: Applied Physics A: Materials Science and Processing

Year: 2024

Citations: 2


📝Combined Experimental and Theoretical Investigation on the Structural, Electronic, Magnetic, and Optical Properties of Pr₂CoFeO₆ Double Perovskite

Authors: Dhilip, M., Rameshkumar, S., Raji, R.K., Chinnathambi, R., Ghfar, A.A.

Journal: Materials Today Communications

Year: 2024

Citations: 20


📝The Role of In Situ and Operando Techniques in Unraveling Local Electrochemical Supercapacitor Phenomena

Authors: Ramachandran, T., Raji, R.K., Palanisamy, S., Renuka, N., Karuppasamy, K.

Journal: Journal of Industrial and Engineering Chemistry

Year: 2024

Citations: 2


📝Multifunctional Covalent-Organic Frameworks (COFs)-2D MXenes Composites for Diverse Applications

Authors: Ramachandran, T., Hamed, F., Kumar, Y.A., Raji, R.K., Hegazy, H.H.

Journal: Journal of Energy Storage

Year: 2023

Citations: 36


📝Enhancing Asymmetric Supercapacitor Performance with NiCo₂O₄–NiO Hybrid Electrode Fabrication

Authors: Ramachandran, T., Hamed, F., Raji, R.K., Vijayalakshmi, L., Ansar, S.

Journal: Journal of Physics and Chemistry of Solids

Year: 2023

Citations: 46


📝Tailoring Multiferroic Characteristics in LaFeO₃ Nanocrystals via Rare-Earth Pr³⁺ Doping

Authors: Raji, R.K., Ramachandran, T., Hamed, F., Srinivasa, S.

Journal: Advances in Condensed Matter Physics

Year: 2023

Citations: 20