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Crystal Facets-Activity Correlation for Oxygen Evolution Reaction in Compositional Complex Alloys.

Hui-Feng ZhaoJun-Qing YaoYa-Song WangNiu GaoTao ZhangLi LiYuyao LiuZheng-Jie ChenJing PengXin-Wang LiuHai-Bin Yu
Published in: Advanced science (Weinheim, Baden-Wurttemberg, Germany) (2024)
Compositional complex alloys, including high and medium-entropy alloys (HEAs/MEAs) have displayed significant potential as efficient electrocatalysts for the oxygen evolution reaction (OER), but their structure-activity relationship remains unclear. In particular, the basic question of which crystal facets are more active, especially considering the surface reconstructions, has yet to be answered. This study demonstrates that the lowest index {100} facets of FeCoNiCr MEAs exhibit the highest activity. The underlying mechanism associated with the {100} facet's low in-plane density, making it easier to surface reconstruction and form amorphous structures containing the true active species is uncovered. These results are validated by experiments on single crystals and polycrystal MEAs, as well as DFT calculations. The discoveries contribute to a fundamental comprehension of MEAs in electrocatalysis and offer physics-based strategies for developing electrocatalysts.
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