光催化
材料科学
硫黄
催化作用
空位缺陷
吸附
纳米技术
光化学
载流子
化学工程
化学
光电子学
物理化学
有机化学
工程类
冶金
结晶学
作者
Zhenxing Ren,Yang Li,Qiuyu Ren,Xiaojie Zhang,Xiaofan Fan,Xinjuan Liu,Jinchen Fan,Shuling Shen,Zhihong Tang,Yuhua Xue
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2024-06-11
卷期号:14 (12): 1009-1009
被引量:20
摘要
Photocatalysis represents a sustainable strategy for addressing energy shortages and global warming. The main challenges in the photocatalytic process include limited light absorption, rapid recombination of photo-induced carriers, and poor surface catalytic activity for reactant molecules. Defect engineering in photocatalysts has been proven to be an efficient approach for improving solar-to-chemical energy conversion. Sulfur vacancies can adjust the electron structure, act as electron reservoirs, and provide abundant adsorption and activate sites, leading to enhanced photocatalytic activity. In this work, we aim to elucidate the role of sulfur vacancies in photocatalytic reactions and provide valuable insights for engineering high-efficiency photocatalysts with abundant sulfur vacancies in the future. First, we delve into the fundamental understanding of photocatalysis. Subsequently, various strategies for fabricating sulfur vacancies in photocatalysts are summarized, along with the corresponding characterization techniques. More importantly, the enhanced photocatalytic mechanism, focusing on three key factors, including electron structure, charge transfer, and the surface catalytic reaction, is discussed in detail. Finally, the future opportunities and challenges in sulfur vacancy engineering for photocatalysis are identified.
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