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Scope and Mechanism of a True Organocatalytic Beckmann Rearrangement with a Boronic Acid/Perfluoropinacol System under Ambient Conditions

机译:在环境条件下用硼酸/全氟频哪醇系统进行真正的有机催化贝克曼重排的范围和机理

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摘要

Catalytic activation of hydroxyl functionalities is of great interest for the production of pharmaceuticals and commodity chemicals. Here, 2-alkoxycarbonyl- and 2-phenoxycarbonyl-phenylboronic acid were identified as efficient catalysts for the direct and chemoselective activation of oxime N–OH bonds in the Beckmann rearrangement. This classical organic reaction provides a unique approach to prepare functionalized amide products that may be difficult to access using traditional amide coupling between carboxylic acids and amines. Using only 5 mol % of boronic acid catalyst and perfluoropinacol as an additive in a polar solvent mixture, the operationally simple protocol features mild conditions, a broad substrate scope, and a high functional group tolerance. A wide variety of diaryl, aryl-alkyl, heteroaryl-alkyl, and dialkyl oximes react under ambient conditions to afford high yields of amide products. Free alcohols, amides, carboxyesters, and many other functionalities are compatible with the reaction conditions. Investigations of the catalytic cycle revealed a novel boron-induced oxime transesterification providing an acyl oxime intermediate involved in a fully catalytic nonself-propagating Beckmann rearrangement mechanism. The acyl oxime intermediate was prepared independently and was subjected to the reaction conditions. It was found to be self-sufficient; it reacts rapidly, unimolecularly without the need for free oxime. A series of control experiments and ~(18)O labeling studies support a true catalytic pathway involving an ionic transition structure with an active and essential role for the boronyl moiety in both steps of transesterification and rearrangement. According to ~(11)B NMR spectroscopic studies, the additive perfluoropinacol provides a transient, electrophilic boronic ester that is thought to serve as an internal Lewis acid to activate the ortho-carboxyester and accelerate the initial, rate-limiting step of transesterification between the precatalyst and the oxime substrate.
机译:羟基官能团的催化活化对于药物和商品化学品的生产非常重要。在这里,2-烷氧基羰基和2-苯氧基羰基-苯基硼酸被确定为贝克曼重排中肟N-OH键的直接和化学选择性活化的有效催化剂。这种经典的有机反应提供了一种独特的方法来制备官能化的酰胺产品,而使用羧酸和胺类之间的传统酰胺偶合可能很难获得这种功能。在极性溶剂混合物中仅使用5 mol%的硼酸催化剂和全氟频哪醇作为添加剂,操作简单的操作步骤具有温和的条件,宽泛的底物范围和较高的官能团耐受性。各种各样的二芳基,芳基-烷基,杂芳基-烷基和二烷基肟在环境条件下反应,以提供高收率的酰胺产物。游离醇,酰胺,羧基酯和许多其他官能团与反应条件兼容。催化循环的研究揭示了一种新型的硼诱导的肟酯交换反应,提供了一种参与完全催化的非自蔓延贝克曼重排机制的酰基肟中间体。酰基肟中间体是独立制备的,并使其经受反应条件。它被认为是自给自足的。它反应迅速,单分子,不需要游离肟。一系列对照实验和〜(18)O标记研究均支持涉及离子转移结构的真正催化途径,该离子转移结构在酯交换和重排步骤中均对硼酰基部分具有活性和必要作用。根据〜(11)B NMR光谱研究,添加剂全氟频哪醇可提供一种瞬态亲电硼酸酯,该酯被认为是一种内部路易斯酸,可激活邻羧基酯并加速酯基之间的酯交换反应的初始限速步骤。催化剂和肟底物。

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  • 来源
    《Journal of the American Chemical Society》 |2018年第15期|5264-5271|共8页
  • 作者单位

    Department of Chemistry, University of Alberta, Edmonton, Alberta T6G 2G2, Canada;

    Department of Chemistry, University of Alberta, Edmonton, Alberta T6G 2G2, Canada;

    Department of Chemistry, University of Alberta, Edmonton, Alberta T6G 2G2, Canada;

    Department of Chemistry, University of Alberta, Edmonton, Alberta T6G 2G2, Canada;

  • 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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