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首页> 外文期刊>Chemistry: A European journal >DFT Mechanistic study On diene metathesis catalyzed by ru-based grubbs-hoveyda-type carbenes: The key Role of π-electron density delocalization in the hoveyda ligand
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DFT Mechanistic study On diene metathesis catalyzed by ru-based grubbs-hoveyda-type carbenes: The key Role of π-electron density delocalization in the hoveyda ligand

机译:DFT机制研究钌基grubbs-hoveyda型碳烯催化的二烯复分解:π电子密度离域在hoveyda配体中的关键作用

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The catalytic activity and catalyst recovery of two heterogenized ruthenium-based precatalysts (H and NO_2(4)) in diene ring-closing metathesis have been studied by means of density functional calculations at the B3LYP level of theory. For comparison and rationalization of the key factors that lead to higher activities and higher catalyst recoveries, four other Grubbs-Hoveyda complexes have also been investigated. The full catalytic cycle (catalyst formation, propagation, and precatalyst regeneration) has been considered. DFT calculations suggest that either for the homogeneous and heterogenized systems the activity of the catalysts mainly depends on the ability of the precursor to generate the propagating carbene. This ability does not correlate with the traditionally identified key factor, the Ru?O interaction strength. In contrast, precatalysts with lower alkoxy-dissociation energy barriers and lower stabilities compared with the propagating carbene also present larger C1-C2 bond length (i.e., lowerπ character of the C-C bond that exists between the metal-carbene (Ru= C) and the phenyl ring of the Hoveyda ligand). Catalyst recovery, regardless of whether a release-return mechanism occurs or not, is also mainly determined by the π derealization. Therefore, future Grubbs-Hoveyda-type catalyst development should be based on fine-tuning the π-electron density of the phenyl moiety, with the subsequent effect on the metalloaromaticity of the ruthenafurane ring, rather than considering the modification of the Ru?O interaction.
机译:通过在B3LYP理论水平上的密度泛函计算,研究了两种杂化的钌基预催化剂(H和NO_2(4))在二烯闭环复分解反应中的催化活性和催化剂的回收率。为了对导致更高活性和更高催化剂回收率的关键因素进行比较和合理化,还​​研究了另外四种Grubbs-Hoveyda配合物。已经考虑了整个催化循环(催化剂的形成,扩散和催化剂的再生)。 DFT计算表明,对于均相系统和异相系统,催化剂的活性主要取决于前驱体生成传播碳烯的能力。这种能力与传统上确定的关键因素Ru 2 O相互作用强度不相关。相比之下,与传播的卡宾相比,烷氧基离解能垒较低且稳定性较低的预催化剂也具有较大的C1-C2键长(即,金属卡宾与碳原子之间存在的CC键的π特征较低(Ru = C))。 Hoveyda配体的苯环)。不管是否发生释放返回机制,催化剂的回收率也主要由π失活决定。因此,未来的Grubbs-Hoveyda型催化剂的开发应基于微调苯基部分的π电子密度,随后对钌呋喃环的金属芳构性产生影响,而不是考虑修饰Ru?O相互作用。

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