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首页> 外文期刊>Journal of the American Chemical Society >A Unified Explanation for Chemoselectivity and Stereospecificity of Ni-Catalyzed Kumada and Cross-Electrophile Coupling Reactions of Benzylic Ethers: A Combined Computational and Experimental Study
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A Unified Explanation for Chemoselectivity and Stereospecificity of Ni-Catalyzed Kumada and Cross-Electrophile Coupling Reactions of Benzylic Ethers: A Combined Computational and Experimental Study

机译:Ni催化的Kumada的化学选择性和立体专一性以及苯甲醚的跨亲电偶联反应的统一解释:计算和实验研究相结合

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摘要

Ni-catalyzed C(sp(3))-O bond activation provides a useful approach to synthesize enantioenriched products from readily available enantioenriched benzylic alcohol derivatives. The control of stereospecificity is key to the success of these transformations. To elucidate the reversed stereospecificity and chemoselectivity of Ni-catalyzed Kumada and cross-electrophile coupling reactions with benzylic ethers, a combined computational and experimental study is performed to reach a unified mechanistic understanding. Kumada coupling proceeds via a classic cross-coupling mechanism. Initial rate-determining oxidative addition occurs with stereoinversion of the benzylic stereogenic center. Subsequent transmetalation with the Grignard reagent and syn-reductive elimination produce the Kumada coupling product with overall stereoinversion at the benzylic position. The cross-electrophile coupling reaction initiates with the same benzylic C-O bond cleavage and transmetalation to form a common benzylnickel intermediate. However, the presence of the tethered alkyl chloride allows a facile intramolecular S(N)2 attack by the benzylnickel moiety. This step circumvents the competing Kumada coupling, leading to the excellent chemoselectivity of cross-electrophile coupling. These mechanisms account for the observed stereospecificity of the Kumada and cross-electrophile couplings, providing a rationale for double inversion of the benzylic stereogenic center in cross-electrophile coupling. The improved mechanistic understanding will enable design of stereoselective transformations involving Ni-catalyzed C(sp(3))-O bond activation.
机译:Ni催化的C(sp(3))-O键活化提供了一种有用的方法,可以从容易获得的对映体富集的苄醇衍生物合成对映体富集的产品。立体特异性的控制是这些转化成功的关键。为了阐明Ni催化的Kumada的反向立体定向和化学选择性以及与苄基醚的交叉亲电子偶联反应,进行了组合的计算和实验研究,以达成统一的机理理解。熊田耦合通过经典的交叉耦合机制进行。初始速率决定性氧化加成发生在苄基立体发生中心的立体转化上。随后用格氏试剂进行重金属化和同还原还原产生了Kumada偶联产物,其在苄基位置具有整体立体转化。亲电子交联反应以相同的苄基C-O键断裂和金属转移反应引发,从而形成常见的苄基镍中间体。然而,系留的烷基氯的存在允许苄镍部分容易地分子内S(N)2攻击。此步骤绕过了竞争性的Kumada偶联,导致了亲电亲核偶联的出色的化学选择性。这些机制解释了所观察到的熊田和交叉亲电子偶联的立体特异性,为交叉亲电子偶联中苄基立体发生中心的两次转化提供了理论依据。改进的机理理解将使设计涉及Ni催化的C(sp(3))-O键活化的立体选择性转化成为可能。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第14期|5835-5855|共21页
  • 作者单位

    Zhejiang Univ, Dept Chem, Hangzhou 310027, Zhejiang, Peoples R China;

    Univ Calif Irvine, Dept Chem, Irvine, CA 92697 USA;

    Univ Calif Irvine, Dept Chem, Irvine, CA 92697 USA;

    Zhejiang Univ, Dept Chem, Hangzhou 310027, Zhejiang, Peoples R China;

    Univ Calif Irvine, Dept Chem, Irvine, CA 92697 USA;

    Univ Calif Irvine, Dept Chem, Irvine, CA 92697 USA;

    Univ Portland, Dept Chem, Portland, OR 97203 USA;

    Univ Calif Irvine, Dept Chem, Irvine, CA 92697 USA;

    Zhejiang Univ, Dept Chem, Hangzhou 310027, Zhejiang, Peoples R China;

  • 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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