Density Functional Modeling of Ligand Effects on Electronic Structure and C-H Bond Activation Activity of Copper(III) Hydroxide Compounds

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Abstract

A series of Cu(III)-OH complexes supported by differently substituted bis(carboxamido)pyridine ligands is modeled to identify factors affecting electronic structure and hydrogen atom transfer reactivity. Activation of hydrocarbon substrates is inferred to be influenced by a combination of many factors, including overall charge state, counterion nature (when present), solvation, attractive and repulsive steric interactions, and quantum mechanical tunneling along the reaction coordinate.

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Dereli, B., Momeni, M. R., & Cramer, C. J. (2018). Density Functional Modeling of Ligand Effects on Electronic Structure and C-H Bond Activation Activity of Copper(III) Hydroxide Compounds. Inorganic Chemistry, 57(16), 9807–9813. https://doi.org/10.1021/acs.inorgchem.8b01530

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