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Identifying Active Site in NiCo Sulfide Catalyst for Sulfion-Oxidation-Assisted Water Electrolysis

delete2026-07-01
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张俊明 cover
张俊明 (Junming Zhang) *
X
Xiongfeng Ma
N
Na Li
Y
Yingjian Fang
T
Tianjun Hu
E
Ergui Luo
Y
Yangfan Li
B
Baoliang lv
Y
Yanxia Jiang *
J
Jianfeng Jia *
DOI:10.34133/energymatadv.0365delete
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Abstract

Abstract

En 中文
Hydrogen production through electrolysis of water is limited by the sluggish oxygen evolution reaction (OER), whereas substituting the OER with recyclable electrochemical sulfion oxidation reaction (SOR) offers a sustainable strategy. However, insufficient understanding of the SOR mechanism still hinders the development of efficient and stable catalysts. Here, nickel cobalt sulfide (S-NiCo) nanoneedle array has been used as efficient electrocatalyst for alkaline OER and SOR, whereas trace Ru nanocluster on S-NiCo substrate (Ru@S-NiCo) could efficiently electrocatalyze the alkaline hydrogen evolution reaction. The S-NiCo catalyst with heterointerface exhibits an OER overpotential (η) of 270 mV at 100 mA/cm2, and in situ electrochemical Raman measurement confirms that the real active species is the oxyhydroxide (Ni/Co–OOH). In particular, SOR displays an ultralow potential of 0.27 V at 100 mA/cm2 and operates stably for 100 h. Theoretical calculations uncover that the truly active species of Ni3S2 and Co9S8 synergistically oxidize sulfion stepwise to short-chain polysulfides and S8. In addition, the electrocatalytic coupling is compared to the traditional water splitting. This work provides a new insight for design hydrogen production system assembled with Ru@S-NiCo and S-NiCo, which substantially reduces the cell voltage by 1.146 V at 100 mA/cm2 and saves over 70.5% of power consumption by enabling efficient and durable multipurpose catalysts, thus realizing energy-efficient hydrogen generation and environmentally friendly sulfion recycling.

Journal

Energy Material Advances cover
Energy Material Advances
IF:
15.9
Papers:
225
Citations:
1.6K

Organization

S
Shanxi Normal University
Scholars:
3.6K
Papers: 2.3K
Citations: 2.6K
X
xiamen university
Scholars:
5.7W
Papers: 3.7W
Citations: 67
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