制氢
异质结
煅烧
光催化
氢
析氧
热液循环
光催化分解水
材料科学
分解水
化学工程
化学
光化学
光电子学
电化学
催化作用
物理化学
电极
工程类
有机化学
作者
Zhengxin Peng,Hisayoshi Kobayashi,Nan Lu,Jiemei Zhang,Jing Sui,Xiaoqing Yan
出处
期刊:Energy & Fuels
[American Chemical Society]
日期:2022-12-02
卷期号:36 (24): 15100-15111
被引量:20
标识
DOI:10.1021/acs.energyfuels.2c03182
摘要
We demonstrate the viability of the In2O3/In2S3 heterojunction for efficient photocatalytic H2 evolution from a formaldehyde aqueous solution, which is an alternative renewable hydrogen source, in a direct Z-scheme manner under visible light without any electron mediator and cocatalyst. The optimal In2O3/In2S3 heterojunction shows a fast hydrogen evolution rate of 6.16 mmol·g–1·h–1, which is approximately 166 times and 6 times higher than that of pure In2O3 and pure In2S3, respectively. The superior photocatalytic activity of the In2O3/In2S3 heterojunction compared to single-component In2O3 and In2S3 is attributed to its appropriate band gap, enhanced charge separation, and transfer abilities, as attested by various spectroscopic characterization and photoelectrochemistry experiments. Among the different fabrication approaches, the sequential hydrothermal–calcination technique, which produces a hydrangea-like morphology, affords the most active In2O3/In2S3 heterojunction photocatalyst. Molecular O2 is found to play a key role in instigating the photocatalytic H2 evolution from formaldehyde oxidation as a catalytic electron scavenger, which is not consumed throughout the reaction.
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