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阳离子调制的Ni/NiN复合异质结作为高效的双功能析水电催化剂

Cation-Modulated Ni/NiN Compound Heterojunctions as Highly Efficient Bifunctional Electrocatalysts for Water Splitting.

作者信息

Zhong Weigao, Sun Qiming, Lv Lin, Han Yong, Hong Zhanghua, Wang Guohua, Ao Xiang, Zhai Yuling, Zhu Tao, Zhu Xing, Wang Hua, Li Kongzhai, Li Zhishan

机构信息

Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093, Yunnan, PR China.

Hubei Key Laboratory of Micro-Nanoelectronic Materials and Devices, Hubei University, Wuhan 430062, Hubei, PR China.

出版信息

ACS Appl Mater Interfaces. 2025 Jan 8;17(1):909-919. doi: 10.1021/acsami.4c15087. Epub 2024 Dec 28.

DOI:10.1021/acsami.4c15087
PMID:39731759
Abstract

The exploration and rational design of high-performance, durable, and non-precious-metal bifunctional oxygen electrocatalysts are highly desired for the large-scale application of overall water splitting. Herein, an effective and straightforward coupling approach was developed to fabricate high-performance bifunctional OER/HER electrocatalysts based on core-shell nanostructure comprising a Ni/NiN core and a NiFe(OH) shell. The as-prepared Ni/NiN@NiFe(OH)-4 catalyst exhibited low overpotentials of 57 and 243 mV at 10 mA cm for the HER and OER in 1.0 m KOH, respectively, superior to most bifunctional oxygen electrocatalysts reported so far. Compared to the unmodified Ni/NiN, the Ni/NiN@NiFe(OH)-4 catalyst exhibited a 43.3-fold increase in mass activity for the OER and an 8.7-fold increase for the HER, as well as a 29.5-fold increase in intrinsic activity for the OER and a 2.6-fold increase for the HER. When employed as both the cathode and the anode of the electrolyzer for the overall water splitting reaction, its voltage was reduced to 1.58 V at 10 mA cm. This surface reconstruction method increased the electrochemically active surface area and enhanced the catalytic activity. Furthermore, in situ Raman spectroscopy revealed that the Fe etching reduced the onset potential for the active phase NiOOH, promoted its formation, and accelerated the reaction kinetics, thereby enhancing the overall electrocatalytic performance of the catalyst.

摘要

对于全水解的大规模应用而言,高性能、耐用且非贵金属的双功能氧电催化剂的探索和合理设计备受期待。在此,开发了一种有效且直接的耦合方法,以制备基于包含Ni/NiN核和NiFe(OH)壳的核壳纳米结构的高性能双功能析氧反应/析氢反应(OER/HER)电催化剂。所制备的Ni/NiN@NiFe(OH)-4催化剂在1.0 M KOH中,对于HER和OER在10 mA cm时分别表现出57和243 mV的低过电位,优于迄今为止报道的大多数双功能氧电催化剂。与未改性的Ni/NiN相比,Ni/NiN@NiFe(OH)-4催化剂对于OER的质量活性提高了43.3倍,对于HER提高了8.7倍,对于OER的本征活性提高了29.5倍,对于HER提高了2.6倍。当用作全水解反应电解槽的阴极和阳极时,其在10 mA cm时的电压降至1.58 V。这种表面重构方法增加了电化学活性表面积并增强了催化活性。此外,原位拉曼光谱表明,Fe蚀刻降低了活性相NiOOH的起始电位,促进了其形成,并加速了反应动力学,从而提高了催化剂的整体电催化性能。

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