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叔烷基胺中的催化 C(sp3)-H 键活化。

Catalytic C(sp)-H bond activation in tertiary alkylamines.

机构信息

Department of Chemistry, University of Cambridge, Cambridge, UK.

出版信息

Nat Chem. 2020 Jan;12(1):76-81. doi: 10.1038/s41557-019-0393-8. Epub 2019 Dec 20.

Abstract

The development of robust catalytic methods to assemble tertiary alkylamines provides a continual challenge to chemical synthesis. In this regard, transformation of a traditionally unreactive C-H bond, proximal to the nitrogen atom, into a versatile chemical entity would be a powerful strategy for introducing functional complexity to tertiary alkylamines. A practical and selective metal-catalysed C(sp)-H activation facilitated by the tertiary alkylamine functionality, however, remains an unsolved problem. Here, we report a Pd(II)-catalysed protocol that appends arene feedstocks to tertiary alkylamines via C(sp)-H functionalization. A simple ligand for Pd(II) orchestrates the C-H activation step in favour of deleterious pathways. The reaction can use both simple and complex starting materials to produce a range of multifaceted γ-aryl tertiary alkylamines and can be rendered enantioselective. The enabling features of this transformation should be attractive to practitioners of synthetic and medicinal chemistry as well as in other areas that use biologically active alkylamines.

摘要

开发用于组装叔烷基胺的稳健催化方法一直是化学合成的挑战。在这方面,将传统上无反应性的 C-H 键(靠近氮原子)转化为多功能化学实体,将是向叔烷基胺中引入功能复杂性的有力策略。然而,通过叔烷基胺官能团促进的实用且选择性的金属催化 C(sp)-H 活化仍然是一个未解决的问题。在这里,我们报告了一种 Pd(II) 催化的方案,通过 C(sp)-H 官能化将芳烃原料连接到叔烷基胺上。一种简单的 Pd(II)配体可调节 C-H 活化步骤,有利于有害途径。该反应可以使用简单和复杂的起始原料来生成一系列多方面的γ-芳基叔烷基胺,并可实现对映选择性。这种转化的支持特征对于合成和药物化学领域的从业者以及其他使用生物活性烷基胺的领域应该具有吸引力。

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