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用于高效电催化通用pH值析氢的CoP/CoS异质结构的界面工程

Interfacial engineering of CoP/CoS heterostructure for efficiently electrocatalytic pH-universal hydrogen production.

作者信息

Niu Xian-Jun, Wang Ya-Jun, Gao Guo-Hong, Yang Teng-Da, Mei Jia-Wei, Qi Yong-Cheng, Tian Run-Ze, Li Ji-Sen

机构信息

Department of Chemistry and Chemical Engineering, Jinzhong University, Jinzhong 030619, PR China.

School of Chemistry, Chemical Engineering and Materials, Jining University, Qufu 273155, PR China.

出版信息

J Colloid Interface Sci. 2023 Dec 15;652(Pt A):989-996. doi: 10.1016/j.jcis.2023.08.128. Epub 2023 Aug 23.

Abstract

The design and development of high-performance, low-cost catalysts with long-term durability are crucial for hydrogen generation from water electrolysis. Interfacial engineering is an appealing strategy to boost the catalytic performance of electrode materials toward hydrogen evolution reaction (HER). Herein, we report a simple phosphidation followed by sulfidation treatment to construct heterogeneous cobalt phosphide-cobalt sulfide nanowire arrays on carbon cloth (CoP/CoS/CC). When evaluated as catalysts toward the HER, the resultant CoP/CoS/CC exhibits efficient pH-universal hydrogen production due to the heterostructure, synergistic contribution of CoP and CoS, and conductive substrate. To attain a current density of 10 mA cm, overpotentials of only 111.2, 58.1, and 182.9 mV for CoP/CoS/CC are required under alkaline, acidic, and neutral conditions, respectively. In particular, the as-prepared CoP/CoS/CC shows markedly improved HER electroactivity in 1.0 M KOH, even outperforming commercial Pt-C/CC at a current density of >50 mA cm. In addition, the self-assembled CoP/CoS||NiFe layered double hydroxide electrolyzer demonstrates efficient catalytic performance and long-time stability, excelling the benchmark Pt-C||IrO. These findings indicate an effective pathway for the fabrication of high-performance heterogeneous electrocatalysts for hydrogen production in the future.

摘要

设计和开发具有长期耐久性的高性能、低成本催化剂对于水电解制氢至关重要。界面工程是提高电极材料对析氢反应(HER)催化性能的一种有吸引力的策略。在此,我们报道了一种简单的先磷化后硫化处理,以在碳布(CoP/CoS/CC)上构建异质结构的磷化钴-硫化钴纳米线阵列。当作为HER催化剂进行评估时,所得的CoP/CoS/CC由于其异质结构、CoP和CoS的协同作用以及导电基底,表现出高效的pH通用型产氢性能。在碱性、酸性和中性条件下,CoP/CoS/CC分别仅需111.2、58.1和182.9 mV的过电位即可达到10 mA cm的电流密度。特别是,所制备的CoP/CoS/CC在1.0 M KOH中表现出显著提高的HER电活性,在电流密度>50 mA cm时甚至优于商业Pt-C/CC。此外,自组装的CoP/CoS||NiFe层状双氢氧化物电解槽表现出高效的催化性能和长期稳定性,优于基准Pt-C||IrO。这些发现为未来制备高性能异质电催化剂用于制氢指明了一条有效途径。

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