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Enantioselective photoredox catalysis enabled by proton-coupled electron transfer.

机译:通过质子耦合电子转移实现对映选择性光氧化还原催化。

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摘要

The field of asymmetric radical catalysis has witnessed tremendous growth over the last 30 years. However, very few strategies for effectively controlling enantioselectivity have been reported. This deficit reflects the broader challenge connected with generating radical intermediates bound to a chiral catalyst via non-covalent interactions.;This thesis provides the first examples of inducing asymmetry through non-covalent interaction in photoredox processes. The success of this novel strategy stems from the application of proton-coupled electron transfer (PCET) to generate radical intermediates. Taking advantage of the hydrogen-bonding requirements of PCET, we have generated radical intermediates as hydrogen-bonded adducts of chiral anion catalysts, enabling highly enantioselective C-C bond forming reactions.;This strategy has been applied to the first highly enantioselective catalytic aza-pinacol cyclization. Reductive PCET generates ketyl radical intermediates wherein direct hydrogen bonding interactions between these neutral radical intermediates and chiral catalysts provides the basis for asymmetric induction. Detailed mechanistic studies have shed light on the role of chiral phosphate in asymmetric induction. Preliminary studies on intermolecular ketyl-olefin coupling are also reported.;Additionally, oxidative PCET has been applied to the activation of indoles for the concise synthesis of cyclotryptamine natural products. Three step syntheses of (-) chimonanthine and (+) alline are reported. Furthermore, mechanistic studies in support of a concerted PCET mechanism are disclosed.
机译:在过去的30年中,不对称自由基催化领域得到了巨大的发展。然而,已经报道了很少有效控制对映选择性的策略。这一缺陷反映了与通过非共价相互作用产生与手性催化剂键合的自由基中间体有关的更广泛的挑战。本论文提供了在光氧化还原过程中通过非共价相互作用诱导不对称的第一个实例。这种新颖策略的成功源于质子耦合电子转移(PCET)产生自由基中间体的应用。利用PCET的氢键要求,我们已经生成了自由基中间体,作为手性阴离子催化剂的氢键加合物,可实现高度对映选择性的CC键形成反应。;该策略已应用于首个高度对映选择性的氮杂频哪醇环化反应。还原性PCET生成酮基自由基中间体,其中这些中性自由基中间体与手性催化剂之间的直接氢键相互作用为不对称诱导提供了基础。详细的机理研究揭示了手性磷酸盐在不对称诱导中的作用。还报道了分子间酮基-烯烃偶联的初步研究。另外,氧化性PCET已被用于吲哚的活化,以合成环色胺天然产物。报道了(-)鸟嘌呤和(+)烯丙胺的三步合成。此外,公开了支持协调的PCET机制的机理研究。

著录项

  • 作者

    Rono, Lydia Jepkorir.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Organic chemistry.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 271 p.
  • 总页数 271
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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