Mursaleem Ansari

Affiliations: 
Indian Institute of Technology Bombay, Mumbai, Maharashtra, India 
Area:
Catalysis
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"Mursaleem Ansari"
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Kumar M, Gupta MK, Ansari M, et al. (2024) C-H bond activation by high-valent iron/cobalt-oxo complexes: a quantum chemical modeling approach. Physical Chemistry Chemical Physics : Pccp
Keerthi C S A, Beegam S, Das S, et al. (2023) Nitric Oxide Oxygenation Reactions of Cobalt-Peroxo and Cobalt-Nitrosyl Complexes. Inorganic Chemistry
Sen A, Ansari M, Rajaraman G. (2023) Mechanism of Hydroboration of CO Using an Fe Catalyst: What Controls the Reactivity and Product Selectivity? Inorganic Chemistry. 62: 3727-3737
Ansari M, Rajaraman G. (2023) Comparative oxidative ability of mononuclear and dinuclear high-valent iron-oxo species towards the activation of methane: does the axial/bridge atom modulate the reactivity? Dalton Transactions (Cambridge, England : 2003). 52: 308-325
Yadav O, Ansari M, Ansari A. (2022) Electronic structures, bonding aspects and spectroscopic parameters of homo/hetero valent bridged dinuclear transition metal complexes. Spectrochimica Acta. Part a, Molecular and Biomolecular Spectroscopy. 278: 121331
Spillecke L, Tripathi S, Koo C, et al. (2021) Role of Coordination Geometry on the Magnetic Relaxation Dynamics of Isomeric Five-Coordinate Low-Spin Co(II) Complexes. Inorganic Chemistry
Ray K, Chandra A, Ansari M, et al. (2021) Ligand Constraint Induced Peroxide Activation for Electrophilic Reactivity. Angewandte Chemie (International Ed. in English)
Biswas JP, Ansari M, Paik A, et al. (2021) Effect of ligand backbone on the reactivity and mechanistic paradigm of non-heme iron(IV)-oxo during olefin epoxidation. Angewandte Chemie (International Ed. in English)
Ansari M, Senthilnathan D, Rajaraman G. (2020) Deciphering the origin of million-fold reactivity observed for the open core diiron [HO-Fe-O-Fe[double bond, length as m-dash]O] species towards C-H bond activation: role of spin-states, spin-coupling, and spin-cooperation. Chemical Science. 11: 10669-10687
Kumar R, Pandey B, Sen A, et al. (2020) Role of oxidation state, ferryl-oxygen, and ligand architecture on the reactivity of popular high-valent FeIV=O species: A theoretical perspective Coordination Chemistry Reviews. 419: 213397
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