双金属片
催化作用
草酸盐
氢氧化物
选择性
无机化学
化学
法拉第效率
电化学
镍
钴
析氧
可逆氢电极
制氢
甘油
氧化还原
金属
电极
有机化学
物理化学
工作电极
作者
Yizhong Zou,Wenda Zhang,Hanwen Xu,Jingguo Yang,Jiangyong Liu,Zhi‐Guo Gu,Xiaodong Yan
标识
DOI:10.1016/j.jcis.2023.07.010
摘要
Glycerol oxidation reaction can be substituted for oxygen evolution reaction for more efficient hydrogen production due to its lower thermodynamic potential. Herein, a series of NiCo hydroxide nanosheets containing abundant Ni3+ species and surface ligands were synthesized by in-situ structural transformation of bimetallic organic frameworks in alkaline media for efficient glycerol oxidation reaction. It is found that the incorporation of Co ions increases the content of the Ni3+ species, and that the Ni/Co ratio of 1.0 lead to the optimal catalytic performance. The oxalate-modified nickel-cobalt hydroxide with the optimized Ni/Co ratio can deliver a current density of 10 mA cm-2 at 1.26 V vs. RHE (reversible hydrogen electrode), and reaches its maximum selectivity and Faradaic efficiency at 1.30 V vs. RHE. A high selectivity of 82.9% and a Faradaic efficiency of 91.0% are achieved. The high catalytic activity can be mainly attributed to the abundant Ni3+ species and surface carboxyl groups.
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