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Updated: Mar 16, 2026

Isolating Free Carbenes, their Mixed Dimers and Organic Radicals
Published on: April 19, 2019
Two-State Reactivity Mechanism of Benzene C-C Activation by Trinuclear Titanium Hydride
Bo Zhu1, Wei Guan1, Li-Kai Yan1
1Institute of Functional Materials Chemistry and Local United Engineering Lab for Power Battery, Faculty of Chemistry, Northeast Normal University , Changchun 130024, P. R. China.
Abstract:
The cleavage of inert C-C bonds is a central challenge in modern chemistry. Multinuclear transition metal complexes would be a desirable alternative because of the synergetic effect of multiple metal centers. In this work, carbon-carbon bond cleavage and rearrangement of benzene by a trinuclear titanium hydride were investigated using density functional theory. The reaction occurs via a novel "two-state reactivity" mechanism. The important elementary steps consist of hydride transfer, benzene coordination, dehydrogenation, oxidative addition, hydride-proton exchange, and reductive elimination. Most importantly, the ground-state potential energy surface switches from nearly degenerate triplet and antiferromagnetic singlet states to a closed-shell singlet state in the dearomatization of benzene, which effectively decreases the activation barrier. Furthermore, the roles of the transition metal centers and hydrides were clarified.
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