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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Reaction of acetaldehyde with Ni+: An extended theoretical study of the decarbonylation mechanism of acetaldehyde by first-row transition metal ions
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Reaction of acetaldehyde with Ni+: An extended theoretical study of the decarbonylation mechanism of acetaldehyde by first-row transition metal ions

机译:乙醛与Ni +的反应:第一行过渡金属离子对乙醛脱羰机理的扩展理论研究

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摘要

We report herein a theoretical study of the reaction of acetaldehyde with Ni+ as an extension of our two recent papers on the decarbonylation of acetaldehyde by late first-row transition metal ions [Zhao, Zhang, Guo, Wu, Lu Chem. Phys. Lett. 2005, 414, 28; Zhao, Guo, Zhang, Wu, Lu ChemPhysChem 2006, 7, 1345]. Geometries of all the stationary points involved in the reaction have been fully optimized at the B3LYP/6-311+G(2df,2pd) level and the decarbonylation mechanism is analyzed in terms of the topology of potential energy surface. Combining with the previous studies, it is found that for the Cr+, Co+, and Fe-4(+) mediated systems decarbonylation of CH3CHO only takes place via C-C activation, and aldehyde C-H activation is unlikely to be important, whereas both C-C and aldehyde C-H activations by Ni+ and Fe-6(+) could result in the decarbonylation of CH3CHO, where hydride-containing species M+(H)(CO)(CH3) is found to be a common minimum along the reaction pathways.
机译:我们在此报告乙醛与Ni +反应的理论研究,作为最近两篇关于第一行过渡金属离子对乙醛脱羰作用的最新论文的延伸[Zhao,Zhang,Guo,Wu,Lu Chem。物理来吧2005,414,28;赵果,张武,陆化学化学,2006,7,1345]。在B3LYP / 6-311 + G(2df,2pd)水平上已完全优化了反应涉及的所有固定点的几何形状,并根据势能面的拓扑分析了脱羰机理。结合先前的研究,发现对于Cr +,Co +和Fe-4(+)介导的系统,CH3CHO的脱羰作用仅通过CC活化而发生,醛CH活化不太重要,而CC和醛Ni +和Fe-6(+)引起的CH活化可能导致CH3CHO脱羰,其中在反应路径中发现含氢化物的M +(H)(CO)(CH3)是一个共同的最小值。

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