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首页> 外文期刊>Bulletin of the Korean Chemical Society >Density Functional Study on the C-H Bond Cleavage of Aldimine by a Rhodium(I) Catalyst
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Density Functional Study on the C-H Bond Cleavage of Aldimine by a Rhodium(I) Catalyst

机译:铑(I)催化剂对醛亚胺的C-H键裂解的密度泛函研究

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We investigated the C-H bond activation mechanism of aldimine by the [RhCl(PPH3)3] model catalyst using DFT B3LYP//SBKJC/6-31G*/6-31G on GAMESS. Due to their potential utility in organic synthesis, C-H bond activation is one of the most active research fields in organic and organometallic chemistry. C-H bond activation by a transition metal catalyst can be classified into two types of mechanisms: direct C-H bond cleavage by the metal catalyst or a multi-step mechanism via a tetrahedral transition state. There are three structural isomers of [RhCl(PH3)2] coordinated aldimine that differ in the position of chloride with respect to the molecular plane. By comparing activation energies of the overall reaction pathways that the three isomeric structures follow in each mechanism, we found that the C-H bond activation of aldimine by the [RhCl(PH3)3] catalyst occurs through the tetrahedral intermediate.
机译:我们在GAMESS上使用DFT B3LYP // SBKJC / 6-31G * / 6-31G通过[RhCl(PPH3)3]模型催化剂研究了Aldimine的C-H键活化机理。由于其在有机合成中的潜在用途,C-H键活化是有机和有机金属化学中最活跃的研究领域之一。过渡金属催化剂对C-H键的活化作用可分为两种机理:金属催化剂对C-H键的直接裂解或通过四面体过渡态的多步机理。 [RhCl(PH3)2]配位的亚胺的三种结构异构体在氯化物相对于分子平面的位置上不同。通过比较三种异构体在每种机理中遵循的整体反应途径的活化能,我们发现[RhCl(PH3)3]催化剂通过二面体中间体对Aldimine进行C-H键活化。

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