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JACS Au|October 4, 2021
Rejigging Electron and Proton Transfer to Transition between Dioxygenase, Monooxygenase, Peroxygenase, and Oxygen Reduction Activity: Insights from Bioinspired Constructs of Heme EnzymesManjistha Mukherjee, Abhishek DeyChemical Communications (Cambridge, England)|August 28, 2020
A heterogeneous bio-inspired peroxide shunt for catalytic oxidation of organic moleculesManjistha Mukherjee, Abhishek DeyACS Central Science|May 2, 2019
Electron Transfer Control of Reductase versus Monooxygenase: Catalytic C-H Bond Hydroxylation and Alkene Epoxidation by Molecular OxygenManjistha Mukherjee, Abhishek DeyInorganic Chemistry|May 9, 2020
Catalytic C-H Bond Oxidation Using Dioxygen by Analogues of Heme SuperoxideManjistha Mukherjee, Abhishek DeyJournal of Inorganic Biochemistry|April 25, 2017
Three phases in pH dependent heme abstraction from myoglobinSohini Mukherjee, Manjistha Mukherjee, Sabyasachi Bandyopadhyay, et al.Current Opinion in Chemical Biology|April 11, 2022
Assembly of redox active metallo-enzymes and metallo-peptides on electrodes: Abiological constructs to probe natural processesAnkita Sarkar, Samir Chattopadhyay, Manjistha Mukherjee, et al.Journal of the American Chemical Society|June 30, 2023
An Artificial [Fe4S4]-Containing Metalloenzyme for the Reduction of CO2 to HydrocarbonsValerie Waser, Manjistha Mukherjee, Ryo Tachibana, et al.Nature Communications|October 13, 2015
A biosynthetic model of cytochrome c oxidase as an electrocatalyst for oxygen reductionSohini Mukherjee, Arnab Mukherjee, Ambika Bhagi-Damodaran, et al.ACS Catalysis|June 13, 2022
O2 Reduction by Biosynthetic Models of Cytochrome c Oxidase: Insights into Role of Proton Transfer Residues from Perturbed Active Sites Models of CcOSohini Mukherjee, Manjistha Mukherjee, Arnab Mukherjee, et al.Chemsuschem|March 16, 2022
Metal-Thiolate Framework for Electrochemical and Photoelectrochemical Hydrogen GenerationSauvik Chatterjee, Sanjib Shaymal, Manjistha Mukherjee, et al.Pageof 2