光催化
表面光电压
材料科学
载流子
纳米技术
电荷(物理)
光诱导电荷分离
分离(统计)
表面电荷
太阳能转换
纳米尺度
可再生能源
化学物理
纳米结构
太阳能
光电子学
化学
计算机科学
催化作用
人工光合作用
物理
电气工程
光谱学
物理化学
工程类
机器学习
量子力学
生物化学
作者
Ruotian Chen,Fengtao Fan,Can Li
标识
DOI:10.1002/anie.202117567
摘要
Abstract The photocatalytic conversion of solar energy offers a potential route to renewable energy, and its efficiency relies on effective charge separation in nanostructured photocatalysts. Understanding the charge‐separation mechanism is key to improving the photocatalytic performance and this has now been enabled by advances in the spatially resolved surface photovoltage (SRSPV) method. In this Review we highlight progress made by SRSPV in mapping charge distributions at the nanoscale and determining the driving forces of charge separation in heterogeneous photocatalyst particles. We discuss how charge separation arising from a built‐in electric field, diffusion, and trapping can be exploited and optimized through photocatalyst design. We also highlight the importance of asymmetric engineering of photocatalysts for effective charge separation. Finally, we provide an outlook on further opportunities that arise from leveraging these insights to guide the rational design of photocatalysts and advance the imaging technique to expand the knowledge of charge separation.
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