Biswajit Mondal

Affiliations: 
2021- IIT Gandhinagar 
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"Biswajit Mondal"
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Behera S, Aziz ST, Singla N, et al. (2023) The synergy between electrochemical substrate oxidation and the oxygen reduction reaction to enable aerobic oxidation. Chemical Communications (Cambridge, England). 59: 11528-11531
Mondal B, Dinda S, Karjule N, et al. (2023) The Implications of Coupling an Electron Transfer Mediated Oxidation with a Proton Coupled Electron Transfer Reduction in Hybrid Water Electrolysis. Chemsuschem. 16: e202300621
Mondal B, Dinda S, Karjule N, et al. (2022) The Implications of Coupling an Electron Transfer Mediated Oxidation with a Proton Coupled Electron Transfer Reduction in Hybrid Water Electrolysis. Chemsuschem. e202202271
Karjule N, Phatake RS, Barzilai S, et al. (2022) Photoelectrochemical alcohols oxidation over polymeric carbon nitride photoanodes with simultaneous H production. Journal of Materials Chemistry. A. 10: 16585-16594
Bates JS, Biswas S, Suh SE, et al. (2022) Chemical and Electrochemical O Reduction on Earth-Abundant M-N-C Catalysts and Implications for Mediated Electrolysis. Journal of the American Chemical Society
Mondal B, Chattopadhyay S, Dey S, et al. (2020) Elucidation of Factors That Govern the 2e/2H vs 4e/4H Selectivity of Water Oxidation by a Cobalt Corrole. Journal of the American Chemical Society
Wang YH, Schneider PE, Goldsmith ZK, et al. (2019) Brønsted Acid Scaling Relationships Enable Control Over Product Selectivity from O Reduction with a Mononuclear Cobalt Porphyrin Catalyst. Acs Central Science. 5: 1024-1034
Sen P, Mondal B, Saha D, et al. (2019) Role of 2 sphere H-bonding residues in tuning the kinetics of CO reduction to CO by iron porphyrin complexes. Dalton Transactions (Cambridge, England : 2003)
Mondal B, Sen P, Rana A, et al. (2019) Reduction of CO2 to CO by an Iron Porphyrin Catalyst in the Presence of Oxygen Acs Catalysis. 9: 3895-3899
Rana A, Kumar Das P, Mondal B, et al. (2018) Investigation of Bridgehead Effects on Reduction Potential in Alkyl and Aryl Azadithiolate-Bridged (µ-SCH2 XCH2 S) [Fe(CO)3 ]2 Synthetic Analogues of [FeFe]-H2 ase Active Site European Journal of Inorganic Chemistry. 2018: 3633-3643
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