Ravindran Sujith
Birla Institute of Technology and Science - Hyderabad Campus, Birla Institute of Technology & Science Pilani - Hyderabad Campus, Indian Institute of Technology Madras, National Institute of Technology
About
I work as a Professor in the Department of Mechanical Engineering at BITS Pilani Hyderabad Campus. My major research areas are in hydrogen storage and development of anode materials for batteries. I have contributed to various government and industrial projects, and have published more than 45 journal papers. Currently, I am also serving as Editorial Board Member in Nature Scientific Reports and Associate Editor (Guest) for the Materials Performance and Characterization (ASTM) journals. Previously served as an Associate Editor (Guest) in the Frontiers in Materials journal.
Employment
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Birla Institute of Technology and Science - Hyderabad Campus Professor2026 - Present
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Birla Institute of Technology & Science Pilani - Hyderabad Campus Associate Professor2021 - 2026
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Birla Institute of Technology and Science - Hyderabad Campus Assistant Professor2015 - 2021
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National Institute of Technology Adhoc Faculty2014 - 2015
Education
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Indian Institute of Technology Madras Ph D2009 - 2014
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National Institute of Technology M Tech2007 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (48)
- Tribological Investigation of Chemically Modified Polytetrafluoroethylene Coating for Hydrogen Valve Application Save
- Enhanced hydrogen uptake of high surface area copper carboxylate frameworks /graphene nanoplatelets nanocomposite Save
- Enhanced H2 storage in silicene through lithium decoration and single vacancy and Stone‐Wales defects: A density functional theory investigation Save
- Hydrogen storage in lithium-decorated single vacancy and Stone-Wales defective silicene: A first-principles investigation Save
- Electrochemical Performance of Polymer-Derived Silicon-Oxycarbide/Graphene Nanoplatelet Composites for High-Performance Li-Ion Batteries Save
- Fabrication and Mechanical Properties of Tri‐Layer B4C‐Reinforced Al–Zn Functionally Graded Foam Having Higher Energy Absorption Efficiency Save
- Hydrogen storage in graphene nanoplatelet incorporated silicon oxycarbides Save
- B4C‐Reinforced Al–Zn Foams Having Superior Energy Absorption Efficiency Save
- A review of silicon oxycarbide ceramics as next generation anode materials for lithium-ion batteries and other electrochemical applications Save
- Applications and Future Trends in Mesoporous Materials Save