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◆ ACS Applied Materials & Interfaces2025-12-04· Materials science

Cobalt Phosphate Interlayer to Enhance the Activity and Stability of the NiFe-LDH Anode in an Anion Exchange Membrane Water Electrolyzer

Lipeng Zhang, Qingqing Lv, Yang Wang, Yufeng Zhang, Yongsheng Wang, Chengjin Chen, Haiyong Wang, Wei Zhu, Zhongbin Zhuang

原始摘要(英文原文)· Original abstract
The development of oxygen evolution reaction (OER) catalysts based on non-noble metals that have high catalytic activity and long-term stability is crucial for the use of an anion exchange membrane water electrolyzer (AEMWE). Here, we report a three-layer composite OER catalyst, NiFe-LDH/CoPi/NF, with the cobalt phosphate (CoPi) interlayer in the middle of nickel foam and a NiFe-LDH nanosheet array. The CoPi interlayer significantly improves the OER catalytic activity as well as the stability. The overpotential required for NiFe-LDH/CoPi/NF to achieve an OER current density of 1000 mA·cm –2 is only 277 mV, and the performance has almost no attenuation for 1000 h of continuous working at 1000 mA·cm –2 . The AEMWE using NiFe-LDH/CoPi/NF as an anode reached a current density of 1 A·cm –2 at the cell voltage of only 1.709 V, and it stably operated up to 1200 h. It is found that the CoPi interlayer modulated the morphology of the NiFe-LDH nanosheet arrays and also tuned the electronic structure of the NiFe-LDH. The Ni in NiFe-LDH/CoPi/NF shows a higher valence state, thereby promoting its activity, and also shows a low dissolution rate, thereby promoting its stability.
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Cobalt Phosphate Interlayer to Enhance the Activity and Stability of the NiFe-LDH Anode in an Anion Exchange Membrane Water Electrolyzer — 科研速览 Science Skim