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Reaction Mechanism of the Anomalous Formal Nucleophilic Borylation of Organic Halides with Silylborane: Combined Theoretical and Experimental Studies

机译:有机卤化物与甲硅烷基硼烷的异常形式亲核硼基化反应机理:理论和实验研究相结合

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摘要

Theoretical and experimental studies have been conducted to elucidate the mechanism of the formal nucleophilic boryl substitution of aryl and alkyl bromides with silylborane in the presence of potassium methoxide. Density functional theory was used in conjunction with the artificial force induced reaction method in the current study to determine the mechanism of this reaction. The results of this analysis led to the identification of a unique carbanion-mediated mechanism involving the halogenophilic attack of a silyl nucleophile on the bromine atom of the substrate. These calculations have, therefore, provided a mechanistic rationale for this counterintuitive borylation reaction. Furthermore, the good functional group compatibility and high reactivity exhibited by this reaction toward sterically hindered substrates can be understood in terms of the low activation energy required for the reaction of the silyl nucleophile with the bromine atom of the substrate and the subsequent rapid and selective consumption of the carbanion species by the in situ generated boron electrophile: The results of an experimental study involving the capture of the anion intermediate provided further evidence in support of the generation of a carbanion species during the course of this reaction. The anomalous formal nucleophilic borylation mechanism reported in this study could be used to provide new insights into silicon and boron chemistry.
机译:已经进行了理论和实验研究,以阐明在甲醇钾存在下用甲硅烷基硼烷对芳基和烷基溴进行正式亲核硼基取代的机理。在当前的研究中,密度泛函理论与人工力诱导反应方法结合使用,以确定该反应的机理。该分析的结果导致鉴定出一种独特的碳负离子介导的机制,该机制涉及甲硅烷基亲核试剂对底物的溴原子的卤素攻击。因此,这些计算为这种反直觉的硼酸酯化反应提供了机械原理。此外,从甲硅烷基亲核试剂与底物的溴原子反应所需的低活化能以及随后的快速和选择性消耗方面,可以理解该反应对空间受阻的底物表现出的良好的官能团相容性和高反应性。原位生成的亲电硼离子对碳负离子物种的研究:涉及捕获阴离子中间体的实验研究结果提供了进一步的证据,支持该反应过程中碳负离子物种的产生。这项研究中报道的异常形式的亲核硼化机理可用于提供有关硅和硼化学的新见解。

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  • 来源
    《Journal of the American Chemical Society》 |2015年第12期|4090-4099|共10页
  • 作者单位

    Graduate School of Chemical Sciences and Engineering, Graduate School of Engineering, Hokkaido University, Kita-13, Nishi-8, Kita-ku, Sapporo 060-8628, Japan;

    Division of Chemical Process Engineering & Frontier Chemistry Center, Graduate School of Engineering, Hokkaido University, Kita-13, Nishi-8, Kita-ku, Sapporo 060-8628, Japan;

    Department of Chemistry, Faculty of Science, Hokkaido University, Kita-10, Nishi-8, Kita-ku, Sapporo 060-0810, Japan;

    Division of Chemical Process Engineering & Frontier Chemistry Center, Graduate School of Engineering, Hokkaido University, Kita-13, Nishi-8, Kita-ku, Sapporo 060-8628, Japan;

    Department of Chemistry, Faculty of Science, Hokkaido University, Kita-10, Nishi-8, Kita-ku, Sapporo 060-0810, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:09:34

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