Department of Chemistry , University of Wisconsin-Madison , 1101 University Avenue , Madison , Wisconsin 53706 , United States.
Small Molecule Design and Development, Lilly Research Laboratories , Eli Lilly and Company , Indianapolis , Indiana 46285 , United States.
J Am Chem Soc. 2018 Jul 25;140(29):9074-9077. doi: 10.1021/jacs.8b05245. Epub 2018 Jul 16.
A Cu-catalyzed method has been identified for aerobic oxidative dimerization of carbazoles and diarylamines to the corresponding N-N coupled bicarbazoles and tetraarylhydrazines. The reactions proceed under mild conditions (1 atm O, 60-80 °C) with a catalyst composed of CuBr·dimethylsulfide and N, N-dimethylaminopyridine. Reactions between carbazole and diarylamines show unusually selective cross-coupling, even with a 1:1 ratio of the two substrates. This behavior was found to arise from reversible formation of the tetraarylhydrazine. Formation of this species is kinetically favored, but cleavage of the N-N bond under the reaction conditions leads to selective formation of the thermodynamically favored cross-coupling product.
已鉴定出一种铜催化方法,可实现咔唑和二芳基胺的有氧氧化二聚反应,生成相应的 N-N 偶联双咔唑和四芳基腙。反应在温和条件下(1 大气压 O,60-80°C)进行,催化剂由 CuBr·二甲基硫醚和 N,N-二甲基氨基吡啶组成。咔唑与二芳基胺之间的反应表现出异常选择性的交叉偶联,即使两种底物的比例为 1:1 也是如此。这种行为是由于四芳基腙的可逆形成引起的。该物种的形成在动力学上是有利的,但在反应条件下 N-N 键的断裂导致选择性形成热力学上有利的交叉偶联产物。