Cristau Henri-Jean, Cellier Pascal P, Spindler Jean-Francis, Taillefer Marc
Laboratoire de Chimie Organique, UMR CNRS 5076 et Ecole Nationale Supérieure de Chimie de Montpellier, 8 rue de L'Ecole Normale, 34296 Montpellier 5, France.
Chemistry. 2004 Nov 5;10(22):5607-22. doi: 10.1002/chem.200400582.
Mild, efficient, copper-catalyzed N-arylation procedures for nitrogen heterocycles, amides, carbamates, and C-arylation procedures for malonic acid derivatives have been developed that afford high yields of arylated products with excellent selectivity. The N-arylation of imidazole with aryl bromides or iodides was found to be greatly accelerated by inexpensive, air-stable catalyst systems, combining catalytic copper salts or oxides with a set of structurally simple chelating ligands. The reaction was shown to be compatible with a broad range of aryl halides, encompassing sterically hindered, electron-poor, and electron-rich ones, providing the arylated products under particularly mild conditions (50-82 degrees C). The lower limit in ligand and catalyst loading and the scope of Ullmann-type condensations catalyzed by complexes bearing those ligands with respect to the nucleophile class have also been investigated. Chelating Schiff base Chxn-Py-Al (1c) generates a remarkably general copper catalyst for N-arylation of pyrrole, indole, 1,2,4-triazole, amides, and carbamates; and C-arylation of diethyl malonate, ethyl cyanoacetate, and malononitrile with aryl iodides under mild conditions (50-82 degrees C). The new method reported here is the most successful to date with regard to Ullmann-type arylation of some of these nucleophiles.
已开发出用于氮杂环、酰胺、氨基甲酸酯的温和、高效的铜催化N-芳基化方法,以及用于丙二酸衍生物的C-芳基化方法,这些方法能以优异的选择性高产率得到芳基化产物。发现用廉价的、空气稳定的催化剂体系(将催化铜盐或氧化物与一组结构简单的螯合配体结合)可大大加速咪唑与芳基溴化物或碘化物的N-芳基化反应。该反应与多种芳基卤化物兼容,包括空间位阻大的、缺电子的和富电子的芳基卤化物,能在特别温和的条件下(50-82摄氏度)得到芳基化产物。还研究了配体和催化剂负载量的下限以及由带有这些配体的配合物催化的乌尔曼型缩合反应相对于亲核试剂类别的范围。螯合席夫碱Chxn-Py-Al(1c)生成了一种非常通用的铜催化剂,用于吡咯、吲哚、1,2,4-三唑、酰胺和氨基甲酸酯的N-芳基化反应;以及在温和条件下(50-82摄氏度)丙二酸二乙酯、氰基乙酸乙酯和丙二腈与芳基碘化物的C-芳基化反应。就这些亲核试剂中的一些的乌尔曼型芳基化反应而言,此处报道的新方法是迄今为止最成功的。