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July 31, 2014Angewandte Chemie International Edition185 citationsOpen Access

Spectroscopic Capture and Reactivity of a Low‐Spin Cobalt(IV)‐Oxo Complex Stabilized by Binding Redox‐Inactive Metal Ions

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SHSeungwoo HongFPFlorian Felix PfaffEKEun‐Ji Kwon

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Abstract

High-valent cobalt-oxo intermediates are proposed as reactive intermediates in a number of cobalt-complex-mediated oxidation reactions. Herein we report the spectroscopic capture of low-spin (S=1/2) Co(IV)-oxo species in the presence of redox-inactive metal ions, such as Sc(3+), Ce(3+), Y(3+), and Zn(2+), and the investigation of their reactivity in C-H bond activation and sulfoxidation reactions. Theoretical calculations predict that the binding of Lewis acidic metal ions to the cobalt-oxo core increases the electrophilicity of the oxygen atom, resulting in the redox tautomerism of a highly unstable (TAML)Co(III)(O˙)(2-) species to a more stable (TAML)Co(IV)(O)(M(n+)) core. The present report supports the proposed role of the redox-inactive metal ions in facilitating the formation of high-valent metal-oxo cores as a necessary step for oxygen evolution in chemistry and biology.

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Cite This Study

Hong et al. (2014) studied this question.

synapsesocial.com/papers/69d813b505ee2ba81dbeef67https://doi.org/10.1002/anie.201405874
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