Subrata Chakraborty
Indian Institute of Technology Jodhpur, University of Zurich, Indian Institute of Technology Kanpur, University of Burdwan
About
Dr. Subrata Chakraborty obtained his Master's degree from IIT Kanpur in 2008. He pursued his doctoral studies at the University of Zurich, Switzerland and received the degree in 2013. He joined the group of Prof. David Milstein at the Weizmann Institute of Science, Israel as a SFWIS Postdoctoral Fellow in 2014 and explored the research area of Organometallics and Homogeneous Catalysis with particular focus on Sustainability. Then he moved to the University of Muenster, Germany in the group of Prof. Gerhard Erker as an AvH Fellow in 2018. After a brief stint at Muenster, he joined the Department of Chemistry, IIT Jodhpur as an Assistant Professor in June 2019.
Employment
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Indian Institute of Technology Jodhpur Assistant Professor2019 - Present
Education
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University of Zurich Ph.D.2008 - 2013
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Indian Institute of Technology Kanpur M.Sc.2006 - 2008
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University of Burdwan B.Sc.2003 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (46)
- Manganese‐Catalyzed Selective Hydration of Nitriles to Primary Amides: Experimental and Theoretical Studies Save
- Selective Hydrogenation of Nitriles to Secondary Imines Using a Pincer Manganese Complex Save
- Bioinspired Manganese Catalyzed Direct Deamination of Primary Amines With Water Forming Carboxylic Acids and Ketones Save
- Optimization of Fe(iii)-based negative electrodes for lithium-ion batteries: probing electrochemical performance and stability characteristics Save
- Manganese-Catalyzed Formate Synthesis via Coupled Methanol Dehydrogenation and Bicarbonate Reduction Save
- Terpenylation of Ketones and a Secondary Alcohol under Hydrogen-Borrowing Manganese Catalysis Save
- A molybdenum-catalyzed acceptorless dehydrogenative approach for quinoline synthesis using amino alcohol Save
- Chromium catalyzed acceptorless dehydrogenative (cross)coupling of primary amines to secondary imines Save
- Chromium-catalyzed sustainable C–C and C–N bond formation: C-alkylation and Friedländer quinoline synthesis using alcohols Save
- Chromium-catalyzed transfer hydrogenation of CO2 to formate using isopropanol under ambient pressure Save