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Facile CO bond cleavage on polynuclear vanadium nitride clusters V 4 N 5 .

Si-Dun WangJiao-Jiao ChenYun-Zhu LiuTong-Mei MaXiao-Na LiSheng-Gui He
Published in: Physical chemistry chemical physics : PCCP (2022)
Identifying the structural configurations of precursors for CO dissociation is fundamentally interesting and industrially important in the fields of, e.g. , Fischer-Tropsch synthesis. Herein, we demonstrated that CO could be dissociated on polynuclear vanadium nitride V 4 N 5 - clusters at room temperature, and a key intermediate, with CO in a N-assisted tilted bridge coordination where the C-O bond ruptures easily, was discovered. The reaction was characterized by mass spectrometry, photoelectron spectroscopy, and quantum-chemistry calculations, and the nature of the adsorbed CO on product V 4 N 5 CO - was further characterized by a collision-induced dissociation experiment. Theoretical analysis evidences that CO dissociation is predominantly governed by the low-coordinated V and N atoms on the (V 3 N 4 )VN - cluster and the V 3 N 4 moiety resembles a support. This finding strongly suggests that a novel mode for facile CO dissociation was identified in a gas-phase cluster study.
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