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Cho, Jaeheung
BIOCC at UNIST
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Peroxocobalt(III) species activates nitriles via a superoxocobalt(II) diradical state

Author(s)
Cho, DasolChoi, SeulhuiCho, JaeheungBaik, Mu-Hyun
Issued Date
2020-03
DOI
10.1039/d0dt00042f
URI
https://scholarworks.unist.ac.kr/handle/201301/48094
Fulltext
https://pubs.rsc.org/en/content/articlelanding/2020/DT/D0DT00042F#!divAbstract
Citation
DALTON TRANSACTIONS, v.49, no.9, pp.2819 - 2826
Abstract
The dioxygenation of nitriles by [CoIII(TBDAP)(O2)]+ (TBDAP = N,N-di-tert-butyl-2,11-diaza[3.3](2,6)-pyridinophane) is investigated using DFT-calculations. The mechanism proposed previously based on experimental observations, which invoked an outer-sphere cycloaddition, was found to be unreasonable. Instead, calculations suggest that an inner-sphere mechanism involving the cleavage of one of the Co–O bonds assisted by substrate uptake is much more likely. The reactively competent species is a triplet consisting of a Co(II)-superoxo functionality, which can undergo O–C bond formation and O–O bond cleavage traversing low energy transition states. The role of the structurally rigid TBDAP ligand is to prevent the participation of the pyridyl ligand in the delocalization of the unpaired electron density.
Publisher
ROYAL SOC CHEMISTRY
ISSN
1477-9226
Keyword
SOLVATION FREE-ENERGIESH BOND ACTIVATIONSPECTROSCOPIC CHARACTERIZATIONMOLECULAR CALCULATIONSELECTRONIC-STRUCTUREHYDROGEN-PEROXIDEAEROBIC OXIDATIONCOMPLEXREACTIVITYMECHANISM

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