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首页> 外文期刊>Journal of the American Chemical Society >Ligand Conformational Flexibility Enables Enantioselective Tertiary C-B Bond Formation in the Phosphonate-Directed Catalytic Asymmetric Alkene Hydroboration
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Ligand Conformational Flexibility Enables Enantioselective Tertiary C-B Bond Formation in the Phosphonate-Directed Catalytic Asymmetric Alkene Hydroboration

机译:配体构象灵活性使膦酸盐定向催化不对称烯烃氢化物中的映选择性叔C-B键形成能够进行映选择性的叔C-B键

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摘要

Conformationally flexible ancillary ligands have been widely used in transition metal catalysis. However, the benefits of using flexible ligands are often not well understood. We performed density functional theory (DFT) and experimental studies to elucidate the mechanisms and the roles of conformationally flexible α,α,α',α'-tetraaryldioxolane-4,5-dimethanol (TADDOL)-derived ligands on the reactivity and selectivity in the Rh-catalyzed asymmetric hydroboration (CAHB) of alkenes. DFT calculations and deuterium labeling studies both indicated that the most favorable reaction pathway involves an unusual tertiary C-B bond reductive elimination to give high levels of regio- and enantioselectivities. Here, the asymmetric construction of the fully substituted carbon center is promoted by the flexibility of the TADDOL backbone, which leads to two ligand conformations with distinct steric environments in different steps of the catalytic cycle. A pseudo-chair ligand conformation is preferred in the rate-determining tertiary benzylic C-B reductive elimination. The less hindered steric environment with this conformation allows the benzylic group to bind to the Rh center in an η~3 fashion, which stabilizes the C-B reductive elimination transition state. On the other hand, a pseudo-boat ligand conformation is involved in the selectivity-determining alkene migratory insertion step, where the more anisotropic steric environment leads to greater ligand-substrate steric interactions to control the π-facial selectivity. Thus, using a conformationally flexible ligand is beneficial for enhancing both reactivity and enantioselectivity by controlling ligand-substrate interactions in two different elementary steps.
机译:构象柔性的辅助配体已被广泛用于在过渡金属催化。然而,使用灵活的配体的利益往往得不到很好的理解。我们的反应性和选择性在执行密度泛函理论(DFT)和实验研究,以阐明的机制和构象柔性α,α,α的角色”,α'-tetraaryldioxolane -4,5-二甲醇(TADDOL) - 衍生的配体烯烃的铑催化的不对称硼氢化(CAHB)。 DFT计算和氘标记研究都表明,最有利的反应途径包括一个不寻常的叔C-B键还原消除,得到高水平的区域选择性和对映选择性。在此,完全取代的碳中心的非对称结构是由TADDOL主链的柔软性,促进了这导致在催化循环的不同步骤不同空间环境2点配体的构象。伪椅子配体构象优选在速率决定叔苄C-B还原消除。在与该构象允许苄型基团结合到在η〜3的方式的Rh中心,这稳定了C-B还原消除过渡状态较少受阻空间环境。在另一方面,伪船配体构象参与决定选择性的烯烃洄游插入步骤,其中,所述多个立体各向异性环境导致更大的配体 - 基底空间相互作用来控制π面部选择性。因此,使用构象柔性配体是用于在两个不同的基本步骤增强通过控制配位体 - 底物相互作用的反应性都和对映选择性是有利的。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第12期|4801-4808|共8页
  • 作者单位

    Department of Chemistry University of Pittsburgh Pittsburgh Pennsylvania 15260 United States Department of Chemistry University of Minnesota Minneapolis Minnesota 55455 United States;

    Department of Chemistry University of Nebraska-Lincoln Lincoln Nebraska 68588 United States Life Sciences Institute University of Michigan Ann Arbor Michigan 48109 United States;

    Department of Chemistry University of Pittsburgh Pittsburgh Pennsylvania 15260 United States;

    Department of Chemistry and Nebraska Center for Integrated Biomolecular Communication (NCIBC) University of Nebraska-Lincoln Lincoln Nebraska 68588 United States;

    Department of Chemistry and Department of Chemical and Petroleum Engineering University of Pittsburgh Pittsburgh Pennsylvania 15260 United States;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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