Khosrowabadi Kotyk Juliet F, Hanna Caitlin M, Combs Rebecca L, Ziller Joseph W, Yang Jenny Y
Department of Chemistry , University of California , Irvine , USA . Email:
Chem Sci. 2018 Feb 6;9(10):2750-2755. doi: 10.1039/c7sc04960a. eCollection 2018 Mar 14.
Water oxidation is catalysed in Nature by a redox cofactor embedded in a hydrogen-bonded network designed to orchestrate proton transfer throughout the challenging 4 electron reaction. In order to mimic aspects of this microenvironment, [CoL(CHCN)][BF] () was synthesized, where L is a dipyridyldiamine ligand with two dimethylamine bases in the secondary coordination sphere. Structural characterization of the corresponding aqua complexes establish hydrogen bonding between the bound water and pendant base(s). Cyclic voltammetry of [CoL(CHCN)][BF] () reveals enhanced oxidative current upon titration with water and controlled potential electrolysis confirms evolution of O. The related complex [CoL(CHCN)][BF] (), which has the same primary coordination environment as but lacks pendant bases, is inactive. The structural and electrochemical studies illustrate the role positioned proton relays can play in promoting redox reactivity.
在自然界中,水氧化是由嵌入氢键网络中的氧化还原辅因子催化的,该网络旨在在具有挑战性的4电子反应中协调质子转移。为了模拟这种微环境的某些方面,合成了[CoL(CHCN)][BF](),其中L是一种在二级配位球中带有两个二甲胺碱基的联吡啶二胺配体。相应水合配合物的结构表征确定了结合水与侧基之间的氢键。[CoL(CHCN)][BF]()的循环伏安法表明,用水滴定后氧化电流增强,控制电位电解证实有O生成。相关配合物[CoL(CHCN)][BF]()与具有相同的一级配位环境,但缺乏侧基,是无活性的。结构和电化学研究表明,定位的质子中继在促进氧化还原反应性方面可以发挥作用。