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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Theoretical study of the electronic structure of group 6 [M(CO)(5)X](-) species (X = NH2, OH, halide, H, CH3) and a reinvestigation of the role of pi-donation in CO lability
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Theoretical study of the electronic structure of group 6 [M(CO)(5)X](-) species (X = NH2, OH, halide, H, CH3) and a reinvestigation of the role of pi-donation in CO lability

机译:第6组[M(CO)(5)X](-)(X = NH2,OH,卤化物,H,CH3)的电子结构的理论研究,以及对pi捐赠在CO稳定性中的作用的重新研究

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Density functional calculations have been employed to investigate the electronic structure of [M(CO)(5)X](-) species (M = Cr, Mo, W; X = NH2, OH, halide, H, CH3) and to compute CO ligand dissociation energies. The calculations indicate that CO loss is most facile from the cis position, and CO dissociation energies are computed to increase along the series X = NH2 < OH < F < Cl < Br < I < CH3 < H. These results are in agreement with available experimental data. Trends in CO dissociation are related to the ability of X to stabilize the unsaturated 16e [M(CO)(4)X](-) species formed. In addition, pi-destabilization of the ground-state [M(CO)(5)X](-) species is equally significant. Analysis of the electronic structure of the 18e species shows that X-pi 4e destabilization results in hybridization at the metal center which enhances trans M-CO but reduces cis M-CO pi-back-donation. Strong pi-donation from X also induces sigma-antibonding interactions between the metal and the cis CO ligands. A fragment analysis reveals that these effects are strongest for the "hard" fluoride, hydroxide, and amide ligands. [References: 65]
机译:密度泛函计算已用于研究[M(CO)(5)X](-)物种的电子结构(M = Cr,Mo,W; X = NH2,OH,卤化物,H,CH3)并进行计算CO配体解离能。计算表明,从顺式位置开始,CO损失最容易发生,并且计算出CO分解能沿X = NH2

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