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Metathesis-active ligands enable a catalytic functional group metathesis between aroyl chlorides and aryl iodides

机译:复分解活性配体使芳酰氯和芳基碘化物之间的催化功能群复位

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摘要

Current methods for functional group interconversion have, for the most part, relied on relatively strong driving forces which often require highly reactive reagents to generate irreversibly a desired product in high yield and selectivity. These approaches generally prevent the use of the same catalytic strategy to perform the reverse reaction. Here we describe a catalytic functional group metathesis approach to interconvert, under CO-free conditions, two synthetically important classes of electrophiles that are often employed in the preparation of pharmaceuticals and agrochemicals-aroyl chlorides (ArCOCl) and aryl iodides (Ail). Our reaction design relies on the implementation of a key reversible ligand C-P bond cleavage event, which enables a non-innocent, metathesis-active phosphine ligand to mediate a rapid aryl group transfer between the two different electrophiles. Beyond enabling a practical and safer approach to the interconversion of ArCOCl and Arl, this type of ligand non-innocence provides a blueprint for the development of a broad range of functional group metathesis reactions employing synthetically relevant aryl electrophiles.
机译:官能团相互转化的目前的方法在大多数情况下依赖于相对强的驱动力,这通常需要高反应性试剂以高产和选择性产生不可逆的所需产物。这些方法通常防止使用相同的催化策略来进行反应。在这里,我们描述了在无共转变的催化功能型复分解方法,在无共同条件下,两个合成重要的一类通常用于制备药物和农用化学芳基氯化物(ArcoCl)和芳基碘(AIL)的综合性电泳。我们的反应设计依赖于实施关键可逆配体C-P键裂解事件,其使非无辜的复分解 - 活性膦配体能够介导两种不同的电子特权之间的快速芳基转移。除了能够实现ArcoCl和Arl的互联的实用和更安全的方法,这种类型的配体非innocence提供了一种用于开发具有合成相关的芳基电子药物的广泛功能组复分解反应的蓝图。

著录项

  • 来源
    《Nature Chemistry》 |2018年第10期|共7页
  • 作者

    Lee Yong Ho; Morandi Bill;

  • 作者单位

    Max Planck Inst Kohlenforsch Mulheim Germany;

    Max Planck Inst Kohlenforsch Mulheim Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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