催化作用
甘油酸
电解
双功能
电化学
化学工程
电流密度
材料科学
无机化学
选择性
电解质
双功能催化剂
化学
吸附
电催化剂
甘油
电解水
氢
功率密度
电极
制氢
铂金
双金属片
制作
工作(物理)
法拉第效率
过渡金属
Boosting(机器学习)
纳米技术
作者
Chang Li,Huijuan Jing,Haifeng Qi,Zhuobin Guo,Yuan Ma,Zichen Xu,Tasmia Azam,Hua Wang,Xiao Wang,Yi Tan,JL Long,Bo Zhang,Jianping Xiao,Zhong‐Shuai Wu
标识
DOI:10.1002/anie.202525622
摘要
ABSTRACT Selective electrooxidation of glycerol (GLY) to glyceric acid (GLA) offers a promising route for GLY valorization but remains hindered by limited activity and stability. Herein, we report a scalable self‐corrosion strategy for large‐area fabrication of a Ru‐doped Pt/NiFe‐LDH catalyst on Ni foam (PtRu/NiFe‐LDH) with an area of up to 36 cm 2 . The incorporation of Ru modulates the electronic structure, enhances the adsorption of both OH − and GLY, and lowers the free energy barrier for OH* formation, thereby significantly boosting catalytic activity to achieve a recorded current density of 439.5 mA cm − 2 . Furthermore, pulse electrolysis effectively suppresses the formation of PtO x , ensuring long‐term stability. When integrated into a GLY oxidation‐assisted hydrogen evolution system, this bifunctional catalyst reduces the cell voltage by 1.01 V relative to conventional water splitting, while delivering 78.5% selectivity towards GLA and stable operation for over 120 h. This work establishes a viable pathway toward the industrialization of selective electrochemical oxidation of GLY to GLA by integrating advanced catalyst design with optimized electrolyzer configuration.
科研通智能强力驱动
Strongly Powered by AbleSci AI