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Heteroatom-Directed Acylation of Secondary Alcohols To Assign Absolute Configuration

机译:副醇的杂原子为指导酰化以分配绝对构造

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摘要

Birman’s HBTM catalyst is effective for the enantioselective acylation and kinetic resolution of benzylic secondary alcohols. The enantioselective acylation has now been extended to secondary alcohols bearing electron-withdrawing groups such as halides and other heteroatoms. The level of selectivity is modest to good and is sufficient for determining configuration using the competing enantioselective conversion method. A mathematical analysis identifies conditions for achieving maximum differences in conversion and, consequently, assigning configuration with greater confidence. The new method is effective for halohydrins and secondary–tertiary 1,2-diols and was used to confirm the configuration of two inoterpene natural products.
机译:Birman的HBTM催化剂对苄基仲醇的映选择性酰化和动力学分辨率有效。 现在已经扩展到辅助含有电子 - 抽出基团如卤化物和其他杂原子的次醇的辅助醇。 选择性水平适度至良好,并且足以使用竞争对重的倾斜转换方法确定配置。 数学分析识别实现转换的最大差异的条件,从而具有更大的置信度。 新方法对卤代醇和二叔1,2-二醇有效,用于确认两种肉排天然产物的构型。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2018年第5期|共12页
  • 作者单位

    Department of Chemistry 1102 Natural Sciences II University of California at Irvine Irvine California 92697 United States;

    Department of Chemistry 1102 Natural Sciences II University of California at Irvine Irvine California 92697 United States;

    Department of Chemistry 1102 Natural Sciences II University of California at Irvine Irvine California 92697 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

  • 入库时间 2022-08-19 18:55:35

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