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A Computational and Experimental Investigation of the Origin of Selectivity in the Chiral Phosphoric Acid Catalyzed Enantioselective Minisci Reaction

机译:手性磷酸催化映选择性微调反应中选择性起源的计算和实验研究

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摘要

The Minisci reaction is one of the most valuable methods for directly functionalizing basic heteroarenes to form carbon-carbon bonds. Use of prochiral, heteroatom-substituted radicals results in stereocenters being formed adjacent to the heteroaromatic system, generating motifs which are valuable in medicinal chemistry and chiral ligand design. Recently a highly enantioselective and regioselective protocol for the Minisci reaction was developed, using chiral phosphoric acid catalysis. However, the precise mechanism by which this process operated and the origin of selectivity remained unclear, making it challenging to develop the reaction more generally. Herein we report further experimental mechanistic studies which feed into detailed DFT calculations that probe the precise nature of the stereochemistry-determining step. Computational and experimental evidence together support Curtin-Hammett control in this reaction, with initial radical addition being quick and reversible, and enantioselectivity being achieved in the subsequent slower, irreversible deprotonation. A detailed survey via DFT calculations assessed a number of different possibilities for selectivity-determining deprotonation of the radical cation intermediate. Computations point to a clear preference for an initially unexpected mode of internal deprotonation enacted by the amide group, which is a crucial structural feature of the radical precursor, with the assistance of the associated chiral phosphate. This unconventional stereodetermining step underpins the high enantioselectivities and regioselectivities observed. The mechanistic model was further validated by applying it to a test set of substrates possessing varied structural features.
机译:MINISCI反应是直接官能化碱性杂种的最有价值的方法之一,以形成碳键。使用促血原子取代的自由基导致邻近杂芳族体系形成的立体封闭物,产生在药物化学和手性配体设计中有价值的基序。最近,使用手性磷酸催化,开发了一种高度对映选择性的微调和区域选择性方案,用于MINISCI反应。然而,该过程操作的精确机制和选择性的起源仍然不清楚,使得更普遍地发展反应。在此,我们报告了进一步的实验机制研究,该研究涉及详细的DFT计算,探讨了立体化学确定步骤的精确性。计算和实验证据在这种反应中携带Curtin-Hammett控制,初始自由基添加快速可逆,并且在随后的较慢,不可逆的去质子化方面实现了对映选择性的映射性。通过DFT计算的详细调查评估了各种不同的选择性 - 确定自由基阳离子中间体的药物的可能性。计算指向酰胺组初始求解的初始反质选模式的清晰偏好,该酰胺基团是自由基前体的关键结构特征,以及相关的手性磷酸盐的辅助。这种非传统的立体化步骤支撑了观察到的高对映射性和区域选择性。通过将其应用于具有变化结构特征的基板的测试组来进一步验证机械模型。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第50期|21091-21101|共11页
  • 作者单位

    Department of Chemistry University of Cambridge Cambridge CB2 1EW United Kingdom;

    Department of Chemistry University of Cambridge Cambridge CB2 1EW United Kingdom;

    Department of Chemistry University of Cambridge Cambridge CB2 1EW United Kingdom;

    Department of Chemistry University of Cambridge Cambridge CB2 1EW United Kingdom;

    Department of Chemistry University of Cambridge Cambridge CB2 1EW United Kingdom;

    Department of Chemistry University of Cambridge Cambridge CB2 1EW United Kingdom;

  • 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
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  • 入库时间 2022-08-18 23:00:59

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