College of Chemistry and Molecular Sciences, The Institute for Advanced Studies (IAS), Wuhan University, Hubei 430072, China.
State Key Laboratory and Institute of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, China.
Nat Commun. 2017 Feb 1;8:14226. doi: 10.1038/ncomms14226.
Direct cross-coupling between simple arenes and heterocyclic amines under mild conditions is undoubtedly important for C-N bonds construction. Selective C(sp)-H amination is more valuable. Herein we show a selective C(sp)-H amination of arenes (alkyl-substituted benzenes, biphenyl and anisole derivatives) accompanied by hydrogen evolution by using heterocyclic azoles as nitrogen sources. The reaction is selective for C(sp)-H bonds, providing a mild route to N-arylazoles. The KIE (kinetic isotope effect) experiment reveals the cleavage of C-H bond is not involved in the rate-determining step. Kinetic studies indicate the first-order behaviour with respect to the arene component. It is interesting that this system works without the need for any sacrificial oxidant and is highly selective for C(sp)-H activation, whereas C(sp)-H bonds are unaffected. This study may have significant implications for the functionalization of methylarenes which are sensitive to oxidative conditions.
在温和条件下,简单芳环和杂环胺之间的直接交叉偶联对于 C-N 键的构建无疑是重要的。选择性 C(sp)-H 胺化更为有价值。本文展示了一种使用杂环唑作为氮源,芳环(烷基取代苯、联苯和苯甲醚衍生物)在伴随氢气生成的情况下发生的选择性 C(sp)-H 胺化反应。该反应对 C(sp)-H 键具有选择性,为 N-芳基唑的合成提供了一种温和的途径。KIE(动力学同位素效应)实验表明,C-H 键的断裂不参与速率决定步骤。动力学研究表明,反应对芳族组分呈一级反应行为。有趣的是,该体系在不需要任何牺牲氧化剂的情况下就能很好地工作,并且对 C(sp)-H 活化具有高度选择性,而 C(sp)-H 键则不受影响。这项研究可能对功能化对氧化条件敏感的甲基芳环具有重要意义。