光催化
粒子(生态学)
荧光
催化作用
载流子
光谱学
荧光光谱法
材料科学
等离子体子
半导体
光化学
纳米技术
化学
光电子学
物理
光学
有机化学
量子力学
海洋学
地质学
作者
Min Lv,Xiangxiang Zhang,Bei Li,Baibiao Huang,Zhaoke Zheng
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-10-24
卷期号:18 (44): 30247-30268
被引量:5
标识
DOI:10.1021/acsnano.4c10702
摘要
Photocatalysis is a cost-effective approach to producing renewable energy. A thorough comprehension of carrier separation at the micronano level is crucial for enhancing the photochemical conversion capabilities of photocatalysts. However, the heterogeneity of photocatalyst nanoparticles and complex charge migration processes limit the profound understanding of photocatalytic reaction mechanisms. By establishing the precise interrelationship between microscopic properties and photophysical behaviors of photocatalysts, single-particle fluorescence spectroscopy can elucidate the carrier separation and catalytic mechanism of the photocatalysts in situ, which provides perspectives for improving the photocatalytic efficiency. This Review primarily focuses on the basic principles and advantages of single-particle fluorescence spectroscopy and its progress in the study of plasmonic and semiconductor photocatalysis, especially emphasizing its importance in understanding the charge separation and photocatalytic reaction mechanism, which offers scientific guidance for designing efficient photocatalytic systems. Finally, we summarize and forecast the future development prospects of single-particle fluorescence spectroscopy technology, especially the insights into its technological upgrading.
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