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In situ electrodeposition of Pt into a trimetallic MOF composite electrode and its application in water splitting
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作者 Tianpeng Liu Xin Wang +5 位作者 Jie Li Mengyun Hu Jun Yu Shudi Yu Zhengying Wu Yukou Du 《Inorganic Chemistry Frontiers》 2025年第24期8759-8766,共8页
High current density and low cost are key considerations in the design of new electrolytic water catalytic materials.Herein,ternary metal-organic framework(MOF)arrays with a coral-like nanostructure are constructed vi... High current density and low cost are key considerations in the design of new electrolytic water catalytic materials.Herein,ternary metal-organic framework(MOF)arrays with a coral-like nanostructure are constructed via solvothermal growth and in situ electrochemical deposition methods.The excellent gas transfer capability of self-supported electrodes and the synergistic effect between transition metals contribute to the stable operation of the composite electrodes at high current densities.The results demonstrate that FeNiCo/NF and FeNiCoPt/NF exhibit remarkable OER(262 mV at 100 mA cm^(-2))and HER performance(218 mV at 100 mA cm^(-2)).The two-electrode system(FeNiCo/NF||FeNiCoPt/NF)only requires a terminal voltage of 1.70 V to drive the overall water splitting reaction to a current density of 100 mA cm^(-2),with electrochemical stability maintained for over 100 h. 展开更多
关键词 situ electrodeposition solvothermal growth situ electrochemical deposition methodsthe composite electrodes trimetallic MOF composite electrode transition metals water splitting high current density electrolytic water catalytic materialshereinternary
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