催化作用
氧气
碱土金属
析氧
化学
无机化学
材料科学
核化学
碱金属
物理化学
有机化学
电极
电化学
作者
Luo Zhao,Li Wang,Ruijie Shi,Hao Xu,Zixuan Zeng,Xiaomin Lang,Yi Huang,Yuping Liu,Xiaoqin Liao,Ming Nie
标识
DOI:10.1021/acsaem.5c00512
摘要
Creating effective oxygen evolution reaction (OER) catalysts is crucial for advancing water electrolysis and hydrogen generation, thereby mitigating the depletion of conventional fossil fuels. This study prepared a Fe/Ce–Ni2P electrocatalyst with a coral-like structure by hydrothermal and low-temperature phosphating methods. The catalyst demonstrated exceptional performance, achieving current densities of 50 and 200 mA cm –2 at overpotentials of 250 and 310 mV, respectively─significantly outperforming pure Ni 2 P by 80 and 160 mV. Specifically, Fe doping significantly enhances conductivity and oxygen evolution activity, while Ce doping improves stability. The Fe/Ce–Ni 2 P catalyst exhibited outstanding stability over 100 h, a testament to the synergistic effects of Fe and Ce doping. This work introduces a simple and scalable synthesis strategy, offering a promising approach to developing robust dual-heteroatom-doped catalysts for OER applications.
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