化学
过氧化氢
氟
兴奋剂
电极
无机化学
电化学
制氢
氢
有机化学
物理化学
光电子学
物理
作者
Junjie Wei,Xiangyi Gong,Dongliang Wang,Jiaqing He,Houmei Dai,Kai Wang,Yuxin Li,Yuxiao Li,Ziguo Liu,Jiaquan Zhang
标识
DOI:10.1016/j.jelechem.2025.119107
摘要
The two-electron water oxidation reaction (WOR) is a promising approach for hydrogen peroxide production, which have many advantages over two-electron oxygen reduction reaction and traditional anthraquinone process. However, the WOR are ordinarily prone to proceed in four-electron path which ends in molecular oxygen production for most water oxidation scenarios. Developing high selective 2 electron WOR catalyst is needed. In this research, a group of fluorine and antimony doped sin dioxide coated titanium electrodes (Ti/SnO 2 -Sb-F) were synthesized to study the effect of fluorine doping on hydrogen peroxide production through WOR. The hydrogen peroxide production on Ti/SnO 2 -Sb-F-2 can reached 10.34 μmol·cm −1 ·min −1 with a faradic efficiency of 30.13 % in sodium carbonate electrolyte solution . The production rate was 2.12 times higher than that of Ti/SnO 2 -Sb-F-0 without fluorine doping. Electrochemical characterization revealed that fluorine doping improved the conductivity of SnO 2 and resulted in high electrochemical activity for WOR. Theoretical calculation manifested fluorine doping makes WOR more energetically favorable toward hydrogen peroxide production. This paper provides a substantial approach for selection and synthesis of effective catalyst for 2 e − WOR. • F-doping greatly improved the 2e- WOR activity of Ti/SnO2-Sb electrode. • F-doping on SnO 2 improved conductivity and electrochemical activity for WOR. • F-doping makes WOR more energetically favorable toward hydrogen peroxide production.
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