浸出(土壤学)
腐蚀
钴
氯化物
海水
无机化学
材料科学
化学
化学工程
核化学
冶金
环境科学
地质学
海洋学
工程类
土壤科学
土壤水分
作者
Xiaolu Yang,Chengzhuo Li,H.-K. Song,Y.J. Kou,Qi Wu,Gang Zhao,Chengtie Wu,Jiangping Ma,Lili Bo,Jinhui Tong
标识
DOI:10.1021/acssuschemeng.5c05804
摘要
Developing efficient and stable oxygen evolution reaction (OER) catalysts for seawater electrolysis is vital for large-scale hydrogen production. However, traditional catalysts suffer from metal dissolution and chloride corrosion in saline environments. To overcome these limitations, this work presents a CeO2/CoNiP heterostructured electrocatalyst grown on nickel foam. The catalyst was synthesized via hydrothermal treatment, phosphorization, and electrodeposition. Characterization revealed a flower-like CeO2-coated CoNiP structure with abundant active sites and strong interfacial coupling. Electrochemical tests showed low overpotentials (249 mV at 10 mA·cm–2), excellent stability over 250 h, and enhanced kinetics compared with benchmark catalysts. Mechanistic analyses demonstrated that CeO2 promotes *OH adsorption, prevents Co2+ leaching, and repels Cl– due to its negative surface charge under alkaline conditions. This work offers a promising strategy for designing corrosion-resistant electrocatalysts, highlighting the synergistic effects of CeO2 integration in enhancing both the activity and durability for seawater electrolysis.
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