Concerted Proton–Electron Transfer Reactivity at a Multimetallic Co<sub>4</sub>O<sub>4</sub> Cubane Cluster
Article 2020 en
Authors
JA
Jaruwan Amtawong
BS
Bastian Bjerkem Skjelstad
DB
David Balcells
Abstract
1 min read
High-valent oxocobalt(IV) species have been invoked as key intermediates in oxidative catalysis, but investigations into the chemistry of proton-coupled redox reactions of such species have been limited. Herein, the reactivity of an established water oxidation catalyst, [Co<sub>4</sub>O<sub>4</sub>(OAc)<sub>4</sub>(py)<sub>4</sub>][PF<sub>6</sub>], toward H-atom abstraction reactions is described. Mechanistic analyses and density functional theory (DFT) calculations support a concerted proton-electron transfer (CPET) pathway in which the high energy intermediates formed in stepwise pathways are bypassed. Natural bond orbital (NBO) calculations point to cooperative donor-acceptor σ interactions at the transition state, whereby the H-atom of the substrate is transferred to an orbital delocalized over a Co<sub>3</sub>(μ<sub>3</sub>-O) fragment. The mechanistic insights provide design principles for the development of catalytic C-H activation processes mediated by a multimetallic oxo metal cluster.
Discussion(0)
No comments yet. Be the first to comment.