Devonport Jack, Sully Lauren, Boudalis Athanassios K, Hassell-Hart Storm, Leech Matthew C, Lam Kevin, Abdul-Sada Alaa, Tizzard Graham J, Coles Simon J, Spencer John, Vargas Alfredo, Kostakis George E
Department of Chemistry, School of Life Sciences, University of Sussex, Brighton BN1 9QJ, U.K.
Institut de Chimie de Strasbourg (UMR 7177, CNRS-Unistra), Université de Strasbourg, 4 rue Blaise Pascal, CS 90032, F-67081 Strasbourg, France.
JACS Au. 2021 Oct 6;1(11):1937-1948. doi: 10.1021/jacsau.1c00310. eCollection 2021 Nov 22.
A dimeric Cu(II) complex [Cu(II)L(μ-Cl)Cl] () built from an asymmetric tridentate ligand (2-(((2-aminocyclohexyl)imino)methyl)-4,6-di--butylphenol) and weakly coordinating anions has been synthesized and structurally characterized. In dichloromethane solution, exists in a monomeric [Cu(II)LCl] () (85%)-dimeric () (15%) equilibrium, and cyclic voltammetry (CV) and electron paramagnetic resonance (EPR) studies indicate structural stability and redox retention. Addition of phenylacetylene to the CHCl solution populates and leads to the formation of a transient radical species. Theoretical studies support this notion and show that the radical initiates an alkyne C-H bond activation process via a four-membered ring (Cu(II)-O···H-C) intermediate. This unusual C-H activation method is applicable for the efficient synthesis of propargylamines, without additives, within 16 h, at low loadings and in noncoordinating solvents including late-stage functionalization of important bioactive molecules. Single-crystal X-ray diffraction studies, postcatalysis, confirmed the framework's stability and showed that the metal center preserves its oxidation state. The scope and limitations of this unconventional protocol are discussed.
由不对称三齿配体(2 - (((2 - 氨基环己基)亚氨基)甲基)-4,6 - 二叔丁基苯酚)和弱配位阴离子构建的二聚体铜(II)配合物[Cu(II)L(μ-Cl)Cl]()已被合成并进行了结构表征。在二氯甲烷溶液中,以单体[Cu(II)LCl]()(85%)-二聚体()(15%)的平衡状态存在,循环伏安法(CV)和电子顺磁共振(EPR)研究表明其结构稳定性和氧化还原保留性。向CHCl溶液中加入苯乙炔会使 增多,并导致形成一种瞬态自由基物种。理论研究支持这一观点,并表明该自由基通过四元环(Cu(II)-O···H - C)中间体引发炔烃C - H键活化过程。这种不寻常的C - H活化方法适用于在无添加剂的情况下,在16小时内、低负载量以及在包括重要生物活性分子后期功能化的非配位溶剂中高效合成炔丙胺。单晶X射线衍射研究(后催化)证实了骨架的稳定性,并表明金属中心保持其氧化态。讨论了这种非常规方案的适用范围和局限性。