纳米片
材料科学
电流密度
电解
碱性水电解
析氧
纳米技术
吸附
化学工程
分解水
电解水
催化作用
电解质
物理化学
化学
电极
物理
电化学
工程类
光催化
量子力学
生物化学
作者
Aiqun Kong,Houjun Zhang,Houjun Zhang,Yifan Sun,Ye Lv,Menghui Liu,Haojie Li,Yifei Wang,Yan Fu,Haiyang Zhang,Haiyang Zhang,Wei Li,Jinli Zhang
标识
DOI:10.1016/j.apsusc.2022.156023
摘要
Development of high-performance, high-stability and low-cost electrocatalysts toward the oxygen evolution reaction (OER) is pivotal to the water electrolysis at industrial current density. Herein, a novel Fe/Ni-based hierarchical structure was constructed with the assistance of 2D MXene, showing vertically aligned Ni(OH)2 nanosheets decorated with distinct Fe2O3 morphologies. The Fe2O3/Ni(OH)2/NF exhibited a remarkable OER activity and required only overpotentials of 291, 319 and 341 mV respectively at 500, 1000 and 1500 mA cm−2 in alkaline solution and drove the current density of 1300 mA cm−2 about 17 h at the potential of 1.64 V vs RHE. The Fe2O3/Ni(OH)2 precursor underwent in situ surface reconstitution into active FeOOH/NiOOH during alkaline OER. The outstanding performance of Fe2O3/Ni(OH)2/NF was attributable to the synergistic impact between FeOOH and NiOOH for regulating the optimal adsorption of OER intermediates. This work provides an ideal perspective to fabricate resource-rich, low-cost and high-activity FeNi-based electrode for alkaline OER at industrial current density.
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