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Computational Monitoring of Oxidation States in Olefin Metathesis

机译:烯烃复分解中氧化态的计算监测

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摘要

Ruthenium-based catalysts play a pivotal role in the formation of carbon-carbon double bonds in olefin metathesis. The reaction mechanism always involves the formation of a four-membered metallacycle where the Ru centers should exhibit a formal +4 oxidation state. The steric and electronic properties of the so-called spectator N-heterocyclic carbene (NHC) ligand of Ru-benzylidene complexes are, presumably, responsible for the ability/inability of the metal center to achieve the necessary formal oxidation state for the catalytic process run on, and hence should be an essential ingredient in the design of efficient catalysts. In the present study we make use of density functional theory (DFT) calculations combined with the so-called effective oxidation state (EOS) analysis to examine the of the mechanism. In particular, we tackle the Ru2+ versus Au4+ debate in Grubbs catalysts, deepening into details about the different nature of the intermediates of the reaction pathway. We also analyze the picture of (cheaper and cleaner) iron- and osmium-based catalysts. Moreover, the nature and occupation number of the frontier effective fragment orbitals of the ligands sheds light into the subtle electronic differences between first- and second-generation Grubbs catalysts that nevertheless do not affect the assignment of oxidation states.
机译:基于钌的催化剂在烯烃复分解中的碳 - 碳双键形成中起枢转作用。反应机制总是涉及形成四元金属族的形成,其中Ru中心应表现出正式的+ 4氧化态。据可能是Ru-苄基络合物的所谓方向性N-杂环基石(NHC)配体的空间和电子性质是负责金属中心的能力/无法实现催化过程的必要氧化状态在,因此应该是高效催化剂设计中的基本成分。在本研究中,我们利用密度函数理论(DFT)计算与所谓的有效氧化状态(EOS)分析相结合,以检查机制。特别是,我们在Grubbs催化剂中解决Ru2 +与AU4 +争论,深化有关反应途径中间体的不同性质的细节。我们还分析了(更便宜和清洁)铁和锇的催化剂的图片。此外,配体的前沿有效片段轨道的性质和占用数落入第一和第二代GRUBBS催化剂之间的微妙电子差异,仍然不影响氧化态的分配。

著录项

  • 来源
    《Organometallics》 |2019年第24期|共8页
  • 作者单位

    Univ Girona Inst Quim Computac &

    Catalisi Campus Montilivi Girona 17003 Catalonia Spain;

    Univ Girona Inst Quim Computac &

    Catalisi Campus Montilivi Girona 17003 Catalonia Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 元素有机化合物;
  • 关键词

  • 入库时间 2022-08-19 17:54:46

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