塔菲尔方程
纳米片
过电位
析氧
分解水
材料科学
氧气
兴奋剂
催化作用
化学工程
电解水
热液循环
纳米技术
电解
化学
电解质
光电子学
物理化学
电化学
光催化
电极
工程类
有机化学
生物化学
作者
Yonghao Gan,Meilin Cui,Xiaoping Dai,Ying Ye,Fei Nie,Ziteng Ren,Xueli Yin,Baoqiang Wu,Yihua Cao,Run Cai,Xin Zhang
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2022-01-04
卷期号:15 (5): 3940-3945
被引量:57
标识
DOI:10.1007/s12274-021-4068-6
摘要
Large-scale electrolysis of water to produce high-purity hydrogen is one of the effective ways to solve the energy crisis and environmental pollution problems. However, efficient, cheap and stable catalysts are one of the bottlenecks for industrial application in water splitting. Herein, a facile one-step hydrothermal process was applied to fabricate Mn-doped nickel ferrite nanosheets (Mn-NiFe 2 O 4 ) which shown a low overpotential of 200 mV at 50 mA·cm −2 and a small Tafel slope of 47 mV·dec −1 , together with a prominent turnover frequency (TOF) value (0.14 s −1 ) and robust stability. The in-situ UV—vis spectroscopy unveiled the surface reconstruction to generate NiOOH as active sites during oxygen evolution reaction (OER). The excellent electrocatalytic activity of Mn-NiFe 2 O 4 is attributed to the vertically grown nanosheets for exposure more active sites, rich oxygen vacancies, and the hybridization between Ni 3d and O 2p orbitals caused by Mn doping. This work should provide a facile strategy by Mn-doping to simultaneously engineer oxygen vacancies and electronic structure for synergistically triggering oxygen evolution reaction.
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