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Suppressing the lattice oxygen diffusion via high-entropy oxide construction towards stabilized acidic water oxidation

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摘要 The scale-up deployment of ruthenium(Ru)-based oxygen evolution reaction(OER)electrocatalysts in proton exchange membrane water electrolysis(PEMWE)is greatly restricted by the poor stability.As the lattice-oxygen-mediated mechanism(LOM)has been identified as the major contributor to the fast performance degradation,impeding lattice oxygen diffusion to inhibit lattice oxygen participation is imperative,yet remains challenging due to the lack of efficient approaches.Herein,we strategically regulate the bonding nature of Ru–O towards suppressed LOM via Ru-based high-entropy oxide(HEO)construction.The lattice disorder in HEOs is believed to increase migration energy barrier of lattice oxygen.As a result,the screened Ti_(23)Nb_(9)Hf_(13)W_(12)Ru_(43)O_(x) exhibits 11.7 times slower lattice oxygen diffusion rate,84%reduction in LOM ratio,and 29 times lifespan extension compared with the state-of-the-art RuO_(2) catalyst.Our work opens up a feasible avenue to constructing stabilized Ru-based OER catalysts towards scalable application.
出处 《Nano Research》 SCIE EI CSCD 2024年第3期1107-1113,共7页 纳米研究(英文版)
基金 The authors thank the National Key R&D Program of China(No.2021YFB4000200) the National Natural Science Foundation of China(No.22232004) the Strategic Priority Research Program of the Chinese Academy of Sciences(No.XDA21090400) the Jilin Province Science and Technology Development Program(Nos.20210301008GX,YDZJ202202CXJD011,and 20210502002ZP)for financial support.
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