塔菲尔方程
催化作用
钴
草酸盐
异质结
分解水
析氧
化学
制氢
电解
镍
热液循环
过渡金属
化学工程
无机化学
材料科学
光催化
物理化学
冶金
生物化学
光电子学
电化学
电极
工程类
电解质
作者
Tianning Zhou,Yuanyuan Huo,Nana Lei,Yaqiong Gong
标识
DOI:10.1016/j.ijhydene.2022.11.033
摘要
Oxygen evolution reaction (OER) has been recognized as the key role to determine the overall efficiency of hydrogen production by electrolysis of water. The development of green, low-cost and high stability electrocatalysts which can effectively reduce the reaction energy barrier is a key to promote the large-scale application of hydrogen energy. Herein, a modified transition metal oxalate loaded on nickel foam (NF), P–[email protected]2O4/NF heterostructure catalyst was synthesized by simple hydrothermal and electrodeposition methods. By constructing heterostructures and phosphorous doping, the morphology and electronic structure of CoC2O4 were optimized, thus, P–[email protected]2O4/NF shows excellent electrocatalytic performance, the overpotentials of 211/264/295 mV were needed to reach the current densities of 10/100/200 mA cm−2, with a low Tafel slope of 41.33 mV dec−1 and almost constant long-term stability. The results revealed that the construction of the heterostructure led to the superficial electrochemical reconstruction of the cobalt oxalate microrod, which effectually accelerated the transformation of the active species and primely realized the efficient alkaline water oxidation.
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