Yedluri Anil Kumar
Also known as: Yedluri Anil Kumar, (Ph.D.), Anil Kumar Yedluri, (Ph.D.)
Saveetha University, United Arab Emirates University, Pusan National University, Nalanda Institute of Engineering and Technology, National University of Singapore
About
Dr. Yedluri Anil Kumar is an Assistant Professor in the Department of Physics, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences (SIMATS), Chennai, India. He received his Ph.D. in Materials Science and Engineering from Pusan National University, South Korea, and completed postdoctoral research at Seoul National University of Science and Technology (SEOULTECH), South Korea, and United Arab Emirates University (UAEU), Al Ain, UAE. His research focuses on advanced nanomaterials for electrochemical energy storage and conversion, including supercapacitors, rechargeable batteries, MXene-based materials, electrocatalysis, water splitting, and hydrogen production. Dr. Kumar has authored 116 SCI-indexed journal publications, which have received more than 7,200 citations, with an h-index of 49 according to Google Scholar. His current research aims to develop high-performance, sustainable materials for next-generation energy storage, hydrogen technologies, and renewable energy systems through interdisciplinary and internationally collaborative research.
Employment
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Saveetha University Adjunct Faculty2025 - Present
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United Arab Emirates University Postdoctoral Research Fellow2021 - 2025
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National University of Singapore Visiting Scientist2021 - 2021
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Pusan National University Research Associate (Un-Official)2021 - 2021
Education
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Pusan National University Ph.D2018 - 2021
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Nalanda Institute of Engineering and Technology Bachelor of Technology2008 - 2012
Projects & Funding
Projects & funding information is unavailable.
Publications (177)
- 2D layered perovskites: stability, tunability, and their role in next-generation solar energy conversion Save
- Computational quantum hydrogen storage properties of novel double perovskite Na2BeCdH6 hydrides: Structural, elastic, electronics, mechanical, and thermodynamics frontiers of comprehensive DFT study Save
- Double-transition metal MXenes for energy storage and conversion applications Save
- Correction: Moniruzzaman et al. Two-Dimensional Core-Shell Structure of Cobalt-Doped@MnO2 Nanosheets Grown on Nickel Foam as a Binder-Free Battery-Type Electrode for Supercapacitor Application. Nanomaterials 2022, 12, 3187 Save
- A Comprehensive DFT Insight on Thermoelectric Response of Halide Perovskites TlGeZ3 (Z = Cl, Br and I) for Renewable Energy Devices Save
- A DFT Calculations of Mechanical, Optoelectronic and Transport Properties of Cubic AMgI3 (A = Li/Na) Halides for Photovoltaic and Energy Conversion Applications Save
- A review on in-plane ordered MXenes-based materials in addressing challenges faced by biosensor applications Save
- Achieving over 30% efficiency employing a novel double absorber solar cell configuration integrating Ca3NCl3 and Ca3SbI3 perovskites Save
- Additive-assisted oriented growth of cobalt oxide: controlled morphology and enhanced supercapacitor performance Save
- Advanced self-supported FeCo-LDHs electrocatalyst for combined energy storage and water oxidation Save