Journal:Next Energy
Abstract:The harsh working conditions of proton exchange membrane water electrolysis (PEMWE), particularly at the anode, necessitate the development of high-performance anode catalyst materials. Currently, iridium (Ir), one of the rarest elements on Earth, and its derived materials, remain the only viable candidates with reasonable activity and stability. This limitation significantly hinders the commercialization of PEMWE technology. This study presents a nanocomposite catalyst that consists of well-dispersed Ir clusters loaded on an ultrathin phosphomolybdic acid substrate. The optimized catalyst with a low Ir loading of approximately 21 wt%, exhibits an overpotential of 262 mV at 10 mA cm-2 for oxygen evolution reaction in acid, and a mass activity of 501 A g-1Ir at 300 mV overpotential, which is one order of magnitude higher than that of commercial Ir black. A PEMWE device using the developed catalyst with an Ir loading of 0.6 mg cm-2 can drive a current density of 1 A cm-2 at 1.72 V, and demonstrates a degradation rate of 0.20 mV h-1 over 250 h operation at 0.5 A cm-2. The catalyst dissolution rate analysis reveals that mitigating the open circuit potential of molybdenum-based supports is crucial for minimizing material dissolution. The potential control electrochemical system offers a potential strategy for developing cost-effective catalysts for electrolysis.
Note:Siyu Chen†, Hang Liu†, Yue Teng, Pei Liu, Fei Song, Xinlong Li, Jia Ge, Di Wang, Xiandi Sun, Aoli Zhang, Chuan-Ling Zhang, Wai Yin Wong, Zhenbin Wang, and Ya-Rong Zheng*
Indexed by:Journal paper
Issue:8
Page Number:100260
Translation or Not:no
Date of Publication:2025-02-21
Links to published journals:https://www.sciencedirect.com/science/article/pii/S2949821X25000237
Researcher
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
E-Mail:yrzh@hfut.edu.cn
School/Department:Department of Chemistry
Administrative Position:化学系系主任
Education Level:Postgraduate (Doctoral)
Business Address:Shenghua Building Room 301
Gender:Male
Degree:Doctoral degree
Status:Employed
Alma Mater:University of Science and Technology
Discipline:Inorganic Chemistry
Physical Chemistry
Material Science
Applied Chemistry
Honors and Titles:
安徽省高层次人才青年项目
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