M. Natarajan

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2017 Delhi University, New Delhi, Delhi, India 
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Natarajan M, Kumar N, Joshi M, et al. (2022) Mechanism of Diiron Hydrogenase Complexes Controlled by Nature of Bridging Dithiolate Ligand. Chemistryopen. 11: e202100238
Yadav S, Natarajan M, Sathiyendiran M, et al. (2019) Electrochemical aspects of restricted rhenium(I)-based supramolecular complexes with semi-rigid benzimidazolyl and rigid hydroxyquinone ligands Journal of Chemical Sciences. 132
Pandey IK, Natarajan M, Faujdar H, et al. (2018) Intramolecular stabilization of a catalytic [FeFe]-hydrogenase mimic investigated by experiment and theory. Dalton Transactions (Cambridge, England : 2003)
Natarajan M, Kaim V, Kumar N, et al. (2018) A tetranuclear iron complex: substitution with triphenylphosphine ligand and investigation into electrocatalytic proton reduction Journal of Chemical Sciences. 130: 126
Natarajan M, Faujdar H, Mobin SM, et al. (2017) A mononuclear iron carbonyl complex [Fe(μ-bdt)(CO)2(PTA)2] with bulky phosphine ligands: a model for the [FeFe] hydrogenase enzyme active site with an inverted redox potential. Dalton Transactions (Cambridge, England : 2003)
Pandey IK, Natarajan M, Kaur-Ghumaan S. (2015) Hydrogen generation: aromatic dithiolate-bridged metal carbonyl complexes as hydrogenase catalytic site models. Journal of Inorganic Biochemistry. 143: 88-110
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