Yoon Donghwan, Lee Jaeyoung, Seo Bora, Kim Byeongyoon, Baik Hionsuck, Joo Sang Hoon, Lee Kwangyeol
Center for Molecular Spectroscopy and Dynamics, Institute for Basic Science (IBS), Seoul, 02841, Korea.
Department of Chemistry, Korea University, Seoul, 02841, Korea.
Small. 2017 Aug;13(29). doi: 10.1002/smll.201700052. Epub 2017 Jun 8.
The development of Pt-free electrocatalysts for the hydrogen evolution reaction (HER) recently is a focus of great interest. While several strategies are developed to control the structural properties of non-Pt catalysts and boost their electrocatalytic activities for the HER, the generation of highly reactive defects or interfaces by combining a metal with other metals, or with metal oxides/sulfides, can lead to notably enhanced catalytic performance. Herein, the preparation of cactus-like hollow Cu S@Ru nanoplates (NPs) that contain metal/metal sulfide heterojunctions and show excellent catalytic activity and durability for the HER in alkaline media is reported. The initial formation of Ru islands on presynthesized Cu S NPs, via cation exchange between three Cu ions and one Ru , induces the growth of the Ru phase, which is concomitant with the dissolution of the Cu S nanotemplate, culminating in the formation of a hollow nanostructure with numerous thin Ru pillars. Hollow Cu S@Ru NPs exhibit a small overpotential of 82 mV at a current density of -10 mA cm and a low Tafel slope of 48 mV dec under alkaline conditions; this catalyst is among state-of-the-art HER electrocatalysts in alkaline media. The excellent performance of hollow Cu S@Ru NPs originates from the facile dissociation of water in the Volmer step.
近年来,用于析氢反应(HER)的无铂电催化剂的开发是一个备受关注的焦点。虽然已经开发了几种策略来控制非铂催化剂的结构性质并提高其对HER的电催化活性,但通过将一种金属与其他金属或与金属氧化物/硫化物结合来产生高活性缺陷或界面,可以显著提高催化性能。在此,报道了一种仙人掌状空心CuS@Ru纳米片(NPs)的制备,其包含金属/金属硫化物异质结,并且在碱性介质中对HER表现出优异的催化活性和耐久性。通过三个Cu离子与一个Ru之间的阳离子交换,在预合成的CuS NPs上最初形成Ru岛,诱导Ru相的生长,这与CuS纳米模板的溶解同时发生,最终形成具有许多细Ru柱的空心纳米结构。空心CuS@Ru NPs在碱性条件下,在电流密度为-10 mA cm时表现出82 mV的小过电位和48 mV dec的低塔菲尔斜率;该催化剂是碱性介质中最先进的HER电催化剂之一。空心CuS@Ru NPs的优异性能源于Volmer步骤中水的容易解离。