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光氧化还原催化的无金属羰基化反应。

Metal-free carbonylations by photoredox catalysis.

机构信息

Institute of Organic Chemistry, University of Regensburg, Universitaetsstrasse 31, 93040 Regensburg (Germany).

出版信息

Angew Chem Int Ed Engl. 2015 Feb 9;54(7):2270-4. doi: 10.1002/anie.201408516. Epub 2014 Nov 20.

Abstract

The synthesis of benzoates from aryl electrophiles and carbon monoxide is a prime example of a transition-metal-catalyzed carbonylation reaction which is widely applied in research and industrial processes. Such reactions proceed in the presence of Pd or Ni catalysts, suitable ligands, and stoichiometric bases. We have developed an alternative procedure that is free of any metal, ligand, and base. The method involves a redox reaction driven by visible light and catalyzed by eosin Y which affords alkyl benzoates from arene diazonium salts, carbon monoxide, and alcohols under mild conditions. Tertiary esters can also be prepared in high yields. DFT calculations and radical trapping experiments support a catalytic photoredox pathway without the requirement for sacrificial redox partners.

摘要

从芳基亲电试剂和一氧化碳合成苯甲酸酯是过渡金属催化羰基化反应的一个主要例子,该反应广泛应用于研究和工业过程中。这类反应在 Pd 或 Ni 催化剂、合适的配体和化学计量碱的存在下进行。我们开发了一种无金属、配体和碱的替代方法。该方法涉及由可见光驱动的氧化还原反应,由曙红 Y 催化,在温和条件下,由芳烃重氮盐、一氧化碳和醇制备烷基苯甲酸酯。叔酯也可以高产率制备。DFT 计算和自由基捕获实验支持一种不需要牺牲氧化还原对的催化光还原途径。

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