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首页> 外文期刊>Journal of the American Chemical Society >Enantioselective Desymmetrization of 2-Aryl-1,3-propanediols by Direct O-Alkylation with a Rationally Designed Chiral Hemiboronic Acid Catalyst That Mitigates Substrate Conformational Poisoning
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Enantioselective Desymmetrization of 2-Aryl-1,3-propanediols by Direct O-Alkylation with a Rationally Designed Chiral Hemiboronic Acid Catalyst That Mitigates Substrate Conformational Poisoning

机译:通过直接O-烷基化与合理设计的手性血液酸催化剂直接O-烷基化对映的脱墨反转化,减轻基质构象中毒

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摘要

Enantioselective desymmetrization by direct monofunctionalization of prochiral diols is a powerful strategy to prepare valuable synthetic intermediates in high optical purity. Boron acids can activate diols toward nucleophilic additions; however, the design of stable chiral catalysts remains a challenge and highlights the need to identify new chemotypes for this purpose. Herein, the discovery and optimization of a bench-stable chiral 9-hydroxy-9,10-boroxarophenanthrene catalyst is described and applied in the highly enantioselective desymmetrization of 2-aryl-1,3-diols using benzylic electrophiles under operationally simple, ambient conditions. Nucleophilic activation and discrimination of the enantiotopic hydroxy groups on the diol substrate occurs via a defined chairlike six-membered anionic complex with the hemiboronic heterocycle. The optimal binaphthyl-based catalyst 1g features a large aryloxytrityl group to effectively shield one of the two prochiral hydroxy groups on the diol complex, whereas a strategically placed "methyl blocker" on the boroxarophenanthrene unit mitigates the deleterious effect of a competing conformation of the complexed diol that compromised the overall efficiency of the desymmetrization process. This methodology affords monoalkylated products in enantiomeric ratios equal or over 95:5 for a wide range of 1,3-propanediols with various 2-aryl/heteroaryl groups.
机译:通过预孔二醇的直接单官能化进行对映选择性的去误,是制备高光学纯度的有价值的合成中间体的强大策略。硼酸可以激活二醇朝向亲核添加剂;然而,稳定的手性催化剂的设计仍然是一个挑战,并突出了为此目的识别新趋化型的需要。在此,描述了稳定的手性9-羟基-9,10-硼罗基苯蒽催化剂的发现和优化,并在操作简单,环境条件下使用苄基化学物质在2-芳基-1,3-二醇的高度映射性取消脱模中应用。通过与血管杂环的限定的椅子的六元阴离子复合物发生脱氨酸底物对脱氨酸羟基的亲核活化和辨别。最佳的苯甲基催化剂1g具有大型芳基氧基叔镍基团,以有效地保护二醇复合物上的两个初步羟基中的一种,而在硼罗基苯蒽单元上的策略性放置的“甲基封闭蛋白”减轻了络合的竞争构象的有害影响DIOL损害了去误过程的整体效率。该方法提供了单烷基化产物,其对映体比等于或超过95:5,用于具有各种2-芳基/杂芳基的宽100,3-丙二醇。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第11期|4162-4167|共6页
  • 作者单位

    Department of Chemistry Centennial Centre for Interdisciplinary Science University of Alberta Edmonton Alberta Canada T6G 2G2;

    Department of Chemistry Centennial Centre for Interdisciplinary Science University of Alberta Edmonton Alberta Canada T6G 2G2;

    Department of Chemistry Centennial Centre for Interdisciplinary Science University of Alberta Edmonton Alberta Canada T6G 2G2;

    Department of Chemistry Centennial Centre for Interdisciplinary Science University of Alberta Edmonton Alberta Canada T6G 2G2;

    Department of Chemistry Centennial Centre for Interdisciplinary Science University of Alberta Edmonton Alberta Canada T6G 2G2;

  • 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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