双功能
电催化剂
分解水
无机化学
析氧
催化作用
阳极
电化学
材料科学
钌
阴极
氢
钼
浸出(土壤学)
溶解
双功能催化剂
过渡金属
过电位
化学
化学工程
金属
制氢
交换电流密度
电极
钯
电解水
异质结
电子转移
磷
作者
Xiaojing Dong,Yue Hao,Jintao Wang,Tao Zhang,Bo Xu
标识
DOI:10.1002/asia.202500897
摘要
ABSTRACT Bifunctional electrocatalysts for overall water splitting (OWS) is critical for sustainable hydrogen production but remains challenging due to the sluggish kinetics and leaching of metal ions. Herein, we present a kind of phosphorus and molybdenum codoped ruthenium and ruthenium oxides heterostructure (P,Mo 0.1 ‐Ru/RuO 2 ) as a highly efficient bifunctional electrocatalyst for alkaline OWS. The incorporation of P facilitates the electron transfer from P to Ru, leading to the partial reduction of RuO 2 to metallic Ru. Moreover, the reduced oxidation of Ru suppresses the dissolution of RuO 2 , favoring the structural stability. In alkaline media, P,Mo 0.1 ‐Ru/RuO 2 demonstrates enhanced hydrogen evolution and oxygen evolution activities, requiring overpotentials of only 61 and 230 mV, respectively, to achieve a current density of 10 mA cm − 2 . When employed as anode and cathode for OWS, the P,Mo 0.1 ‐Ru/RuO 2 catalyst enabled a low cell voltage of 1.50 V at 10 mA cm − 2 , along with an enhanced electrochemical stability. These results highlight the synergistic effect of anion and cation codoping in enhancing electrocatalytic performance, offering a promising strategy for the design of advanced bifunctional catalysts for sustainable hydrogen production.
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