Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, Wisconsin 53706-1322, USA.
J Am Chem Soc. 2011 Sep 14;133(36):14431-42. doi: 10.1021/ja205647m. Epub 2011 Aug 19.
Building upon recent study of cobalt-oxide electrocatalysts in fluoride-buffered electrolyte at pH 3.4, we have undertaken a mechanistic investigation of cobalt-catalyzed water oxidation in aqueous buffering electrolytes from pH 0-14. This work includes electrokinetic studies, cyclic voltammetric analysis, and electron paramagnetic resonance (EPR) spectroscopic studies. The results illuminate a set of interrelated mechanisms for electrochemical water oxidation in alkaline, neutral, and acidic media with electrodeposited Co-oxide catalyst films (CoO(x)(cf)s) as well as for a homogeneous Co-catalyzed electrochemical water oxidation reaction. Analysis of the pH dependence of quasi-reversible features in cyclic voltammograms of the CoO(x)(cf)s provides the basis for a Pourbaix diagram that closely resembles a Pourbaix diagram derived from thermodynamic free energies of formation for a family of Co-based layered materials. Below pH 3, a shift from heterogeneous catalysis producing O(2) to homogeneous catalysis yielding H(2)O(2) is observed. Collectively, the results reported here provide a foundation for understanding the structure, stability, and catalytic activity of aqueous cobalt electrocatalysts for water oxidation.
在最近研究 pH 值为 3.4 的氟化物缓冲电解液中氧化钴电催化剂的基础上,我们对 pH 值为 0-14 的水缓冲电解液中钴催化的水氧化进行了机理研究。这项工作包括电动研究、循环伏安分析和电子顺磁共振(EPR)光谱研究。研究结果阐明了一系列相互关联的机制,涉及碱性、中性和酸性介质中的电化学水氧化,以及电沉积 Co 氧化物催化剂膜(CoO(x)(cf)s)和均相 Co 催化的电化学水氧化反应。对 CoO(x)(cf)s 循环伏安图中准可逆特征的 pH 值依赖性的分析为 Pourbaix 图提供了基础,该图与从一系列基于 Co 的层状材料的形成热力学自由能得出的 Pourbaix 图非常相似。在 pH 值低于 3 时,观察到从产生 O(2)的多相催化到产生 H(2)O(2)的均相催化的转变。总的来说,这里报道的结果为理解水氧化用的水溶液钴电催化剂的结构、稳定性和催化活性提供了基础。