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A catalyst family of high-entropy alloy atomic layers with square atomic arrangements comprising iron- and platinum-group metals
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A catalyst family of high-entropy alloy atomic layers with square atomic arrangements comprising iron- and platinum-group metals

Cheng-Yu Wu, Yueh-Chun Hsiao, Yi Chen, Kun-Han Lin, Tsung-Ju Lee, Chong-Chi Chi, Jui-Tai Lin, Liang-Ching Hsu, Hsin-Jung Tsai, Jia-Qi Gao, …
Science advances, 卷.10(30), eadl3693
26/07/2024
PMID: 39058768
Web of Science ID: WOS:001279280300023

摘要

Multidisciplinary Sciences Science & Technology Science & Technology - Other Topics
We report a catalyst family of high-entropy alloy (HEA) atomic layers having three elements from iron-group metals (IGMs) and two elements from platinum-group metals (PGMs). Ten distinct quinary compositions of IGM-PGM-HEA with precisely controlled square atomic arrangements are used to explore their impact on hydrogen evolution reaction (HER) and hydrogen oxidation reaction (HOR). The PtRuFeCoNi atomic layers perform enhanced catalytic activity and durability toward HER and HOR when benchmarked against the other IGM-PGM-HEA and commercial Pt/C catalysts. Operando synchrotron x-ray absorption spectroscopy and density functional theory simulations confirm the cocktail effect arising from the multielement composition. This effect optimizes hydrogen-adsorption free energy and contributes to the remarkable catalytic activity observed in PtRuFeCoNi. In situ electron microscopy captures the phase transformation of metastable PtRuFeCoNi during the annealing process. They transform from random atomic mixing (25 degrees C), to ordered L1(0 )(300 degrees C) and L1(2) (400 degrees C) intermetallic, and finally phase-separated states (500 degrees C).

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https://doi.org/10.1126/sciadv.adl3693檢視
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