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Mechanism of the Iron(0)-Catalyzed Hydrosilylation of Aldehydes: A Combined DFT and Experimental Investigation

机译:铁(0)的机制 - 醛催化醛甲硅烷化:CFT和实验研究

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摘要

Hydrosilylation is a fundamental organometallic transformation for the reduction of alkene, carbonyl, and imine functionalities. Herein, we use density functional theory (DFT) calculations, supplemented by experiments, to propose and explore two possible reaction mechanisms of iron(0)-catalyzed hydrosilylation of aldehydes: One is initiated via hydrogen transfer from silane to benzaldehyde, and the other is initiated via sigma-bond metathesis between Si-H and Fe-O bonds. The former mechanism is favored owing to the much lower calculated activation energy. In addition, spin crossover is expected to occur in this low-valent iron(0)-catalyzed reaction and is verified by different computational methods, which indicates that this reaction should have two-state reactivity (TSR). Hence, the reaction along the favored pathway is proposed to take place via quintet intermediates and triplet transition states before the generation of the final product, silyl ether. This study will be helpful for understanding reaction mechanisms involving iron catalysts and may provide a new insight on the design of new iron catalysts by careful tuning of the electronic structure of ligands.
机译:氢化硅烷化是用于减少烯烃,羰基和亚胺功能的基本有机金属转化。在此,我们使用的是通过实验补充的密度官能理论(DFT)计算,提出和探索氧化醛催化的铁(0)的两种可能的反应机制:一种通过从硅烷转移到苯甲醛的催化转移,另一个是通过Si-H和Fe-O键之间的Sigma键复分解引发。由于计算的激活能量较低,以前的机制是有利的。此外,预期在该低价铁(0)中发生旋转交叉 - 催化反应,并通过不同的计算方法验证,这表明该反应应该具有两个状态反应性(TSR)。因此,提出了沿着青睐途径的反应,通过Quintet中间体和三重态转换状态进行,在产生最终产品,甲硅烷基醚之前。该研究将有助于理解涉及铁催化剂的反应机制,并可通过仔细调整配体的电子结构来提供关于新铁催化剂的设计的新见解。

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  • 来源
    《Organometallics》 |2019年第21期|共10页
  • 作者单位

    Nankai Univ Coll Chem State Key Lab Elemento Organ Chem Key Lab Adv Energy Mat Chem Minist Educ Tianjin 300071 Peoples R China;

    Nankai Univ Coll Chem State Key Lab Elemento Organ Chem Key Lab Adv Energy Mat Chem Minist Educ Tianjin 300071 Peoples R China;

    Nankai Univ Coll Chem State Key Lab Elemento Organ Chem Key Lab Adv Energy Mat Chem Minist Educ Tianjin 300071 Peoples R China;

    Texas Tech Univ Dept Chem &

    Biochem Lubbock TX 79409 USA;

    Nankai Univ Coll Chem State Key Lab Elemento Organ Chem Key Lab Adv Energy Mat Chem Minist Educ Tianjin 300071 Peoples R China;

    Texas Tech Univ Dept Chem &

    Biochem Lubbock TX 79409 USA;

    Nankai Univ Coll Chem State Key Lab Elemento Organ Chem Key Lab Adv Energy Mat Chem Minist Educ Tianjin 300071 Peoples R China;

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  • 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 17:54:47

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