Suddhasatwa Basu, FNA, FNASc, FNAE, FRSC, FIE
Also known as: S.Basu
Indian Institute of Technology Delhi, Council of Scientific and Industrial Research Institute of Minerals and Materials Technology, Indian Institute of Science, University of Alberta
About
Prof. Suddhasatwa Basu completed Ph.D./MS in Chemical Engineering from Indian Institute of Science, Bangalore. He holds Federation of Indian Petroleum Industry (FIPI) Chair Professor on Clean Energy at IIT Delhi. Earlier, He was the Director of CSIR-Institute of Minerals & Materials Technology, Bhubaneswar and the Director of Central Institute Mining & Fuel Research, Dhanbad. He has vast work experience on development of materials for energy conversion and storage devices – Green H2 generation & Fuel Cells technologies and rechargeable battery materials, electro-synthesis, wastes to wealth technologies for circular economy. He has published more than 290 articles in high impact journals with H-index 58, 16 patents (10 granted) and 2 technologies transferred. He is a Fellow of Indian National Science Academy, National Academy of Science of India, Indian National Academy of Engineering, Royal Society of Chemistry UK and received Fulbright Fellowship, Herdillia Award, Dr A. V. Rama Rao Foundation's Research Award, SMC Gold Medal, MRSI Medal. He is Editor/Assoc Editor/Ed Board member of several international journals published by Wiley, IOP Science, Springer-Nature, Oxford University Press and Am Chemical Soc.
Employment
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Council of Scientific and Industrial Research Institute of Minerals and Materials Technology Director2018 - 2023
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Indian Institute of Technology Delhi FIPI Chair Professor Clean Energy1998 - Present
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University of Alberta Post-doc Fellow and Teaching Faculty (1997)1994 - 1997
Education
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Indian Institute of Science Ph.D. (MS converted to Ph.D.)1987 - 1993
Projects & Funding
Projects & funding information is unavailable.
Publications (289)
- Revisiting sodium-ion batteries: From interfacial phenomena to interphase formation Save
- Vanadium‐Doped Cobalt‐Based Metal–Organic Framework for Enhanced FDCA Electrosynthesis: Effect of Doping Save
- NiMn2O4 Microsphere as an Efficient Cathode for Aqueous Zinc‐Ion Batteries Save
- A sequential doping strategy for architecturally controlled BiVO4 photoanodes with synergistic co-doping enabled by BiOI conversion Save
- Electrodeposited zeolitic imidazolate framework-8 modified zinc anode supported over porous copper structure for rechargeable aqueous zinc-ion batteries Save
- Role of Cathode Material GDC with B-Site-Substituted Bi0.5Sr0.5Fe0.9X0.1O3−δ (X = Nb, Sn, and Sb) Composites in Enhanced Electrochemical Performance of IT-SOFCs Save
- Self‐Supported CuO/Bi Heterostructure for Electroreduction of CO2 to Formate by Synergistic Electronic Effects Save
- Unlocking new horizons, challenges of integrating machine learning to energy conversion and storage research Save
- Analysis of pressure drop and hold-up during vertical transport of limestone slurry in lean phase and heterogeneous regime Save
- "Bifunctional Strontium‐Iron Doped Neodymium Cobaltite: A Promising Electrocatalyst for Intermediate Temperature Solid Oxide Fuel Cells and CO2 Electrolyzer" Save