AM
AMARTYA MUKHOPADHYAY
Indian Institute of Technology Bombay, Brown University, University of Oxford, Indian Institute of Technology Kanpur, Essar Steel Ltd, National Institute of Technology
Employment
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Indian Institute of Technology Bombay Professor2011 - Present
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Brown University Post Doctoral Research Associate2010 - 2011
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Essar Steel Ltd Graduate Engineer2003 - 2004
Education
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University of Oxford Doctor of Philosophy (i.e., D Phil or PhD)2006 - 2009
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Indian Institute of Technology Kanpur Masters of Tevhnology (M Tech)2004 - 2006
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National Institute of Technology Bachelors in Engineering (BE)1999 - 2003
Projects & Funding
Projects & funding information is unavailable.
Publications (99)
- Outstanding Wear Resistance of Alumina–Carbon Nanotube Composites via “Near‐Ideal” Inter‐/Intragranular Reinforcement Save
- A Descriptor and Tool for Guiding Composition Design toward Developing Single- or Mixed/Hybrid-Phase “Layered” Transition Metal Oxide Cathode Materials for Na-Ion Batteries Save
- Developing intrinsically water-stable high nickel-containing ‘layered’ Li-transition metal oxides for facilitating ‘aqueous electrode processing’ of Li-ion battery cathodes Save
- Binder driven stability for ‘aqueous processed’ ‘layered’ transition metal oxide cathodes for Na-ion batteries Save
- A High-Capacity K-Rich Fe-Based Polyanion Cathode Material for K-Ion Batteries: Structure, Phase Evolution, and Electrochemical Behavior Save
- Influence of boron substitution at Si-site and associated interplay between structure, water-stability, ion-transport and interfacial resistance of NASICON-structured Na3Zr2Si2PO12-based solid electrolyte Save
- Phosphorus Doped Silicon Nanowires as High‐Performance Li‐Ion Battery Anodes and Supercapacitor Electrodes Save
- Graphene oxide versus reduced graphene oxide versus multi‐walled carbon nanotube as reinforcement for wear resistant ceramics Save
- Ethylene Carbonate Free Sulfone‐Based Electrolyte for Enabling Superior Performance of High Ni‐containing Li‐Transition Metal Oxide Cathodes at High Voltage and High Temperature Save
- An Iron‐Based Fluorophosphate Cathode Material for K‐Ion Batteries Save