Prabeer Barpanda
Also known as: Prabeer
Indian Institute of Science, Helmholtz-Institute Ulm, Rutgers, The State University of New Jersey, University of Cambridge, Indian Institute of Technology Bombay
About
Prabeer (b. 1981) hails from the eastern provice of Odisha, India. Following his undergraduate degree in Ceramic Engineering, he obtained a British Chevening Fellowship to pursue an M.Phil. degree education at the University of Cambridge in affiliation to the Wolfson College. Then, he moved to the east coast of USA to pursue a Ph.D. degree in Materials Science at Rutgers University. His PhD research was based on halidated activated carbon based supercapacitor under the supervision of Prof. G. G. Amatucci. After 4 year PhD degree stay, he started his postdoctoral training under the tutelage of Prof. J.M. Tarascon at the Universite de Picardie Jules Verne, France. Following, he worked under Prof. Atsuo Yamada as a JSPS Fellow and senior researcher at the University of Tokyo, Japan. After 10-year long stay abroad, he returned back to India to start his independent research career. His research is focused on electrochemical energy storage devices, mainly batteries and supercapacitors. Apart from research, Prabeer is interested in travelling, reading philosophical books and listening to instrumental music.
Employment
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Helmholtz-Institute Ulm Alexander von Humboldt Fellow2022 - 2022
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Indian Institute of Science Associate Professor2019 - Present
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Indian Institute of Science Assistant Professor2013 - 2019
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Indian Institute of Technology Bombay Assistant Professor2013 - 2013
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University of Tokyo Senior Researcher2012 - 2013
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University of Tokyo JSPS Fellow2010 - 2012
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Universite de Picardie Jules Verne IUT d'Amiens CNRS Postdoctoral Fellow2009 - 2010
Education
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Rutgers, The State University of New Jersey Ph. D.2005 - 2009
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University of Cambridge M. Phil.2003 - 2004
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National Institute of Technology Rourkela B. Engg.1998 - 2002
Projects & Funding
Projects & funding information is unavailable.
Publications (140)
- Cover Feature: Effect of Alkali Metal Ions in Electrolytes on the Electrocatalytic Performance of Cobalt Vanadium Oxide (ChemSusChem 14/2026) Save
- Effect of Alkali Metal Ions in Electrolytes on the Electrocatalytic Performance of Cobalt Vanadium Oxide Save
- Evaluation of rechargeable battery materials using neutrons and muons: From atomic-scale ion transport to cell-level degradation Save
- Next-generation polymer interphases for durable zinc anodes: From dendrite suppression to corrosion control Save
- Role of Defects on the Electrochemical Activity of ZnV2O4 Spinel Cathode for Secondary Zn‐Ion Batteries Save
- Harnessing Fe- and Co-based perovskites as trifunctional electrocatalysts Save
- High-stability cathode materials for sodium-ion batteries: optimization strategies and promising future applications Save
- Unveiling the structure, magnetic, and electrochemical redox mechanism of tavorite LiFePO4OH hydroxyphosphate lithium insertion cathode Save
- Robust Oxygen Evolution on Ni-Doped MoO3: Overcoming Activity–Stability Trade-Off in Alkaline Water Splitting Save
- The effect of Ti-doping on the electrochemical activity of the Li0.44MnO2 cathode material for Li-ion batteries Save