FB Chemie, Technische Universität Kaiserslautern, Erwin-Schrödinger Str. 52, 67663 Kaiserslautern (Germany) http://www.chemie.uni-kl.de/patureau.
Angew Chem Int Ed Engl. 2015 Mar 23;54(13):4102-4. doi: 10.1002/anie.201500089. Epub 2015 Feb 5.
A method was developed for the direct dehydrogenative construction of CN bonds between unprotected phenols and a series of cyclic anilines without resorting to any kind of metal activation of either substrate and without the use of halides. The resulting process relies on the exclusively organic activation of molecular oxygen and the subsequent oxidation of the aniline substrate. This allows the coupling of ubiquitous phenols, thus furnishing aminophenols through an atom-economical and most sustainable dehydrogenative amination method. This new reactivity, which relies on the intrinsic organic reactivity of cumene in what can be seen as a modified Hock activation process of oxygen, is expected to have a large impact on the formation of CN bonds in organic synthesis.
开发了一种无需任何金属激活底物且不使用卤化物的方法,用于在未保护的酚和一系列环状苯胺之间直接脱氢构建 C-N 键。该方法依赖于分子氧的完全有机激活和随后苯胺底物的氧化。这允许普遍存在的酚的偶联,从而通过原子经济和最可持续的脱氢氨化方法提供氨基酚。这种新的反应性依赖于枯烯的内在有机反应性,可以看作是对氧的改性 Hock 活化过程,预计对有机合成中 C-N 键的形成有重大影响。