Cristau Henri-Jean, Ouali Armelle, Spindler Jean-Francis, Taillefer Marc
Laboratoire de Chimie Organique, UMR CNRS 5076, Ecole Nationale Supérieure de Chimie de Montpellier, 8 rue de l'Ecole Normale, 34296 Montpellier Cedex 5, France.
Chemistry. 2005 Apr 8;11(8):2483-92. doi: 10.1002/chem.200400979.
An efficient copper-catalyzed cyanation of aryl iodides and bromides is reported. Our system combines catalytic amounts of both copper salts and chelating ligands. The latter, which have potential nitrogen- and/or oxygen-binding sites, have never previously been used in this type of reaction. A protocol has been developed that enables the cyanation of aryl bromides through the copper-catalyzed in situ production of the corresponding aryl iodides using catalytic amounts of potassium iodide. Aryl nitriles are obtained in good yields and excellent selectivities in relatively mild conditions (110 degrees C) compared with the Rosenmund-von Braun cyanation reaction. Furthermore, the reaction is compatible with a wide range of functional groups including nitro and amino substituents. The protocol reported herein involves two main innovations: the use of catalytic amounts of ligands and the use of acetone cyanohydrin as the cyanating agent in copper-mediated cyanation reactions.
报道了一种高效的铜催化芳基碘化物和溴化物的氰化反应。我们的体系结合了催化量的铜盐和螯合配体。后者具有潜在的氮和/或氧结合位点,以前从未用于此类反应。已经开发出一种方法,通过使用催化量的碘化钾,通过铜催化原位生成相应的芳基碘化物,实现芳基溴化物的氰化反应。与罗森蒙德-冯·布劳恩氰化反应相比,在相对温和的条件(110℃)下,芳基腈以良好的产率和优异的选择性获得。此外,该反应与包括硝基和氨基取代基在内的多种官能团兼容。本文报道的方法涉及两个主要创新:在铜介导的氰化反应中使用催化量的配体以及使用丙酮氰醇作为氰化剂。