Wang Zining, Ji Shan, Liu Fusheng, Wang Hui, Wang Xuyun, Wang Qizhao, Pollet Bruno G, Wang Rongfang
State Key Laboratory Base for Eco-Chemical Engineering, College of Chemical Engineering , Qingdao University of Science and Technology , Qingdao 266042 , China.
College of Biological, Chemical Science and Chemical Engineering , Jiaxing University , Jiaxing 314001 , China.
ACS Appl Mater Interfaces. 2019 Aug 21;11(33):29791-29798. doi: 10.1021/acsami.9b07371. Epub 2019 Aug 7.
The concept of using renewable energy to power water electrolyzers is seen as a favorable approach for the production of green and sustainable hydrogen. The electrochemical water splitting can be significantly and efficiently enhanced using bifunctional catalysts, which are active toward both oxygen evolution reaction (OER) and hydrogen evolution reaction (HER). Herein, a stable and high-performance catalyst based on hybrid-metal/metal-hydroxide nanosheet arrays electroplated onto Cu-metallized cotton textile (Co(OH)@Ni) was designed and fabricated as a bifunctional electrocatalyst for complete water-splitting reactions. It was found that the interconnected α-Co(OH) nanosheets were evenly formed onto the metalized cotton textile, and the optimized Co(OH)@Ni sample exhibited an overpotential of +96 mV at 10 mA cm, with excellent stability toward HER. The as-prepared catalyst also showed superior electrochemical activity and durability toward OER, which was found to be comparable to those of conventional precious group metal-based catalysts. In addition, when Co(OH)@Ni were assembled as electrodes in a water electrolyzer (1 M KOH), a cell voltage of 1.640 V was achieved at a current density of 10 mA cm, enabling it to be a promising bifunctional catalyst for water electrolysis in real applications.
利用可再生能源为水电解槽供电的概念被视为生产绿色可持续氢气的有利途径。使用对析氧反应(OER)和析氢反应(HER)均具有活性的双功能催化剂,可以显著且高效地增强电化学水分解。在此,设计并制备了一种基于电镀在铜金属化棉织物上的混合金属/金属氢氧化物纳米片阵列的稳定高性能催化剂(Co(OH)@Ni),作为用于完全水分解反应的双功能电催化剂。发现相互连接的α-Co(OH)纳米片均匀地形成在金属化棉织物上,优化后的Co(OH)@Ni样品在10 mA cm时的过电位为+96 mV,对HER具有优异的稳定性。所制备的催化剂对OER也表现出优异的电化学活性和耐久性,发现其与传统的贵金属基催化剂相当。此外,当将Co(OH)@Ni组装成水电解槽(1 M KOH)中的电极时,在电流密度为10 mA cm时实现了1.640 V的电池电压,使其成为实际应用中用于水电解的有前景的双功能催化剂。