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Stereochemistry of Transition Metal Complexes Controlled by the Metallo-Anomeric Effect

机译:由金属异常效应控制的过渡金属配合物的立体化学

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摘要

The use of stereoelectronic interactions to control reactivity and selectivity has a long history in chemistry. The anomeric effect, one of the fundamental concepts in organic chemistry, describes the preferences of a substituent at the anomeric carbon in glycosides to adopt axial configuration when the anomeric group is an electronegative element such as oxygen or a halogen. The origin of the anomeric effect has been the subject of intense debate. Explanations capitalizing on either the derealization of the endocyclic oxygen lone pair into the antibonding σ~*_(C_X) orbital or the minimization of the dipole-dipole interactions are currently the two leading theoretical models. Although the majority of experimental and theoretical studies have focused on the elements from groups 6 and 7, little is known about conformational preferences of tetrahydropyran rings substituted with a transition metal at the anomeric carbon and the role of these interactions in stereoselective synthesis. Here, we report studies on conformational and configurational preferences of organometallic complexes stabilized by vicinal heteroatoms. We provide computational evidence that late transition metals adopt the axial position in heterocycles or synclinal geometry in acyclic systems. Furthermore, the anomeric preferences of late transition metals correlate with the oxidation state of the metal and can be explained by hyperconjugative interactions between endocyclic heteroatom and the σ~* acceptor orbitals of the C-M bond. In a broader context, this discovery provides insight into the role of previously unanticipated stereoelectronic effects that can be harnessed in the design of stereoselective reactions, including chemical glycosylation and enantioselective catalysis.
机译:使用立体电子相互作用来控制反应性和选择性在化学中具有悠久的历史。异常效果是有机化学中的基本概念之一,描述了当异常基团是诸如氧气或卤素的电酮元素时采用轴向构型的糖苷碳中的取代基的偏好。异常效应的起源是激烈辩论的主题。解释用致命致命致致抗体对抗抗体σ〜* _(C_x)轨道或偶极偶极交互的最小化的解释是目前这两个领先的理论模型。尽管大多数实验和理论研究的重点集中在第6组和7组的元素上,但是关于在异常碳的过渡金属取代的四氢吡喃环的构象偏好几乎是已知的,并且这些相互作用在立体选择合成中的作用。在这里,我们报告了通过邻阳杂原子稳定的有机金属配合物的构象和配置偏好的研究。我们提供的计算证据表明晚期过渡金属在非循环系统中采用杂环或旋耳几何形状中的轴向位置。此外,晚期过渡金属的异常偏好与金属的氧化状态相关,并且可以通过环环杂原子与C-M键的σ〜β〜*受体轨道之间的超强相互作用来解释。在更广泛的背景下,该发现提供了洞察以前可以利用立体选择反应的设计中可以利用的先前意外的立体电解效应的作用,包括化学糖基化和对映选择性催化。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第35期|15127-15136|共10页
  • 作者

    Feng Zhu; Maciej A. Walczak;

  • 作者单位

    Department of Chemistry University of Colorado Boulder Colorado 80309 United States;

    Department of Chemistry University of th Colorado Boulder Colorado 80309 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
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:16:52

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