Abhishek Dey
Also known as: Dey
Indian Association for the Cultivation of Science, Stanford University
About
Abhishek Dey obtained his bachelor's degree from the Presidency College, Calcutta, and master's degree from the Indian Institute of Technology, Kanpur. He received his PhD from Stanford University, CA, USA, in 2007 working with Prof. Edward I. Solomon. After two years of postdoctoral work with Prof. James P. Collman at Stanford he joined IACS in June 2009 in the department of Inorganic Chemistry where he is now a Professor. His research area involves development of catalysts for a sustainable energy system inspired by the geometric and electronic structure function correlations present in the enzyme active sites. He is the recipient of American chemical society division of Inorganic Chemistry, Society for porphyrin and pthalocyanine young investigator award and Society of Biological Inorganic Chemistry Early Career Award. He has been an young associate of the Indian Academy of Science, Bangalore and served/serving in the international advisory boards of Inorganic Chemistry, ACS Catalysis, Chemical Communications, Journal of Biological Inorganic Chemistry, Journal of Inorganic Biochemistry and Chemical Reviews. He is currently serving as the associate editor of ACS Catalysis.
Employment
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Indian Association for the Cultivation of Science Professor2018 - Present
Education
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Stanford University PhD2001 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (189)
- Proton and Electron Transfer Control of Selectivity in Electrochemical CO2 Reduction: Selective Reduction of CO2 to CO, CH4, and C2H6 Catalyzed by the Same Iron Porphyrin Save
- Enhanced and selective oxygen reduction by iron porphyrin with a biguanide residue in the second coordination sphere Save
- Identification and Reactivity of Peroxyhemiacetal Intermediate during Aldehyde Deformylation by a Heme Ferric-Peroxide Complex Save
- A Minimalist Iron Porphyrin Which Can Catalyze Both Peroxidation and Oxygen Reduction Reaction Save
- Electrocatalytic Reduction of Nitrogen to Ammonia Using a Trinuclear Nickel Thiolate Complex Save
- Hydrogen Bonding Activates Ferric Porphyrin Hydroperoxo Species and Drives the Regioselective Heme Oxygenase Reaction Save
- Second-Sphere Interaction Allows Selective Reduction of Nitrite to NO or Ammonia by Synthetic Iron Porphyrins Save
- Synthesis of Iron Porphyrin with Pendant Thiol Groups: Progress Toward a Model of the Heme/Cu Active Site of Sulfite Reductase Save
- Catalytic Aldehyde Decarbonylase Activity by a Thiolate-Bound Iron Porphyrin: Observation of a Peroxyhemiacetal Intermediate during Catalysis Save
- Hydrogen Oxidation by Bioinspired Models of [FeFe]-Hydrogenase Save