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具有颗粒组装结构的多孔锑锡氧化物作为质子交换膜水电解中高效析氧反应的氧化铱载体

Porous Antimony Tin Oxide with a Particle Assembly Structure as an IrO Support for an Efficient Oxygen Evolution Reaction in Proton-Exchange Membrane Water Electrolysis.

作者信息

Yang Zuobo, Wu Xiaokuan, Cai Leilei, Yun Jimmy, Zhang Jie, Liang Xin, Zhao Hong

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, People's Republic of China.

Qingdao Create & Inspire New Energy Catalysis Company, Limited, Qingdao, Shandong 266100, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2025 Apr 16;17(15):23348-23356. doi: 10.1021/acsami.5c00875. Epub 2025 Apr 1.

Abstract

Proton-exchange membrane water electrolysis (PEMWE) holds great promise for hydrogen production applications. However, the reliance of PEMWE membrane electrodes on high loadings of expensive iridium poses a significant barrier to their commercial viability. Therefore, the development of high-performance oxygen evolution catalysts with a low iridium content is of critical importance. In this research, a porous antimony tin oxide (ATO) conductive support with a particle assembly aggregate structure was fabricated by a carbon template removal method. ATO-supported IrO exhibits significantly improved oxygen evolution reaction (OER) activity, with a much lower overpotential compared to the unsupported IrO catalyst. Moreover, it achieves 1.8 V at 2 A cm with an ultralow loading of iridium (0.3 mg cm) for the proton-exchange membrane electrolyzer. Characterization techniques and density functional theory calculations have elucidated that the enhanced performance is attributed to the porous morphology of ATO and the strong metal oxide-support interaction between IrO and the ATO support. These findings validate the practicality of conductive nanostructured antimony-tin-oxide-supported catalysts for PEMWE applications and offer a pathway for the design of low-Ir OER catalysts.

摘要

质子交换膜水电解(PEMWE)在制氢应用方面具有巨大潜力。然而,PEMWE膜电极对高负载量昂贵铱的依赖对其商业可行性构成了重大障碍。因此,开发低铱含量的高性能析氧催化剂至关重要。在本研究中,通过碳模板去除法制备了具有颗粒组装聚集体结构的多孔锑锡氧化物(ATO)导电载体。ATO负载的IrO表现出显著提高的析氧反应(OER)活性,与无载体的IrO催化剂相比,过电位低得多。此外,对于质子交换膜电解槽,在超低铱负载量(0.3 mg/cm²)下,在2 A/cm²时可达到1.8 V。表征技术和密度泛函理论计算表明,性能的提高归因于ATO的多孔形态以及IrO与ATO载体之间强大的金属氧化物-载体相互作用。这些发现验证了导电纳米结构锑锡氧化物负载催化剂在PEMWE应用中的实用性,并为低铱OER催化剂的设计提供了一条途径。

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