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Updated: Jan 8, 2026

The Synthesis, Characterization and Reactivity of a Series of Ruthenium N-triphosPh Complexes
Published on: April 10, 2015
Quadruple bonding between carbon and transition metal in the global minimum geometry of CM(BO)(CO)2- (M = Ru, Os)
Yu-Qian Liu1,2, Xin-Yu Hou1, Bing Yan1
1Institute of Atomic and Molecular Physics, Jilin University, Changchun 130023, China.
Abstract:
Prompted by the previous report of BFe(CO)3- possessing a B≣Fe quadruple bond, the detailed potential energy surface exploration for the BMC3O3- (M = Fe, Ru, Os) formulation reveals that the most stable isomer for M = Ru, Os has a Cs-symmetric CM(CO)2(BO)- (M = Ru, Os) structure in a singlet electronic state with an ultra-short C-M bond along the center axis, whereas for M = Fe, the global minimum is a Cs-symmetric isomer in the triplet electronic state where C of (OC)C(BO) binds with Fe of the FeCO unit. BM(CO)3- is a kinetically stable high-lying isomer for all cases. Detailed bonding analyses on CM(CO)2(BO)- (M = Ru, Os) reveal that the C-M bond can be described as a quadruple bond consisting of a strong electron-sharing C-M(CO)3- σ and π bonds, accompanied by a strong C←M(CO)3- π bond and a weak C→M(CO)3- σ bond. These bonding motifs expand the landscape of high-order multiple bonding between main-group elements and transition metals, particularly in the context of heavier transition-metal carbonyl complexes.
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