Tracking the dynamic and interactive metal oxidation changes in CoFe, CoNi, and NiFe bimetallic hydroxides for electrocatalytic oxygen evolution
收藏DataCite Commons2026-03-12 更新2026-05-04 收录
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https://archive.materialscloud.org/doi/10.24435/materialscloud:8q-yd
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Bimetallic hydroxides based on iron group metals (i.e., Fe, Co, and Ni) are well-known electrocatalysts for the oxygen evolution reaction (OER). Tremendous efforts have been devoted to investigating their structural and electronic changes under operating conditions to build the structure-activity relationship. It is recognized that the metal oxidation states in these bimetallic hydroxides play important roles in governing the electrocatalytic performance. Therefore, operando hard X-ray absorption spectroscopy (hXAS) is applied to track the dynamic and interactive metal oxidation changes in iron group bimetallic hydroxides under different chemical and electrochemical conditions. Observations of the energy shift at metal-K edges indicate metal oxidation changes in CoFeOxHy are chemically triggered and potential-driven prior to the OER onset. This contrasts with CoNiOxHy and NiFeOxHy, where metal oxidation changes mainly coincide with the OER. After the activation, the Co and Fe oxidation are relatively equal and synchronized in CoFeOxHy. Conversely, for NiFeOxHy and CoNiOxHy, Ni oxidation outweighs Fe oxidation and Co outweighs Ni oxidation, respectively. These findings highlight the functional roles of iron group metals in different bimetallic hydroxides and correlate their dynamic and interactive oxidation changes to their dynamic structural transformation and OER performance.
提供机构:
Materials Cloud
创建时间:
2025-07-08



