KR
Kothandaraman Ramanujam
Indian Institute of Technology Madras, The University of Queensland, National Research Council Canada
About
My research interests are in materials electrochemistry. Solid state materials especially metal-organic frameworks and alloys were explored for electrochemical application such as fuel cells, Li-ion/Na-ion batteries, flow batteries, and dye-sensitized solar cells. Our group is also interested in synthesizing organic redox active materials and understanding their electronic property via density functional theory calculations.
Employment
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The University of Queensland Adjunct Faculty2025 - 2028
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Indian Institute of Technology Madras Professor2021 - Present
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Indian Institute of Technology Madras Associate Professor2016 - Present
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Indian Institute of Technology Madras Assistant Professor2011 - 2016
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National Research Council Canada Research Associate2009 - 2011
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Michigan State University Visiting Reserach Scholar2007 - 2009
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (141)
- An Energy and Power Dense Aqueous Zinc-Ion Hybrid Supercapacitor with Low Leakage Current and Long Cycle Life Save
- Binder-free thin graphite fiber mat sandwich electrode architectures for energy-efficient vanadium redox flow batteries Save
- Crossover-free hydroxy-substituted quinone anolyte and potassium ferrocyanide catholyte for aqueous alkaline organic redox flow battery Save
- Electrode and Conductive Additive Compatibility Yielding Excellent Rate Capability and Long Cycle Life for Sustainable Organic Aqueous Zn-Ion Batteries Save
- Interplay of the functional units of a binder in the oxygen reduction process of zinc-air battery Save
- Molecular engineering of near-infrared active boron dipyrromethene moiety with various donors and acceptors for tuning the absorption behavior and electron injection of the resultant dyes Save
- Platinum Nanoparticle Decorated Expired Drug-Derived N-Doped Ketjenblack Carbon as Efficient Catalyst for PEM Fuel Cells Save
- S, N co-doped graphene quantum dots decorated TiO2 and supported with carbon for oxygen reduction reaction catalysis Save
- Drastic improvement in dye-sensitized solar cell efficiency by electrosorption based dye staining of titania semiconductor photoanode Save
- Nickel-based Hybrid Material for Electrochemical Oxygen Redox Reactions in Alkaline Medium Save