人工光合作用
太阳能燃料
太阳能
光伏
可再生能源
能量转换
化学能
光伏系统
工艺工程
环境科学
材料科学
纳米技术
化学
物理
光催化
工程类
电气工程
催化作用
热力学
生物化学
有机化学
作者
Yuxing Xu,Ailong Li,Tingting Yao,Changtong Ma,Xianwen Zhang,Jafar Hussain Shah,Hongxian Han
出处
期刊:Chemsuschem
[Wiley]
日期:2017-11-04
卷期号:10 (22): 4277-4305
被引量:108
标识
DOI:10.1002/cssc.201701598
摘要
Converting sunlight to solar fuels by artificial photosynthesis is an innovative science and technology for renewable energy. Light harvesting, photogenerated charge separation and transfer (CST), and catalytic reactions are the three primary steps in the processes involved in the conversion of solar energy to chemical energy (SE-CE). Among the processes, CST is the key "energy pump and delivery" step in determining the overall solar-energy conversion efficiency. Efficient CST is always high priority in designing and assembling artificial photosynthesis systems for solar-fuel production. This Review not only introduces the fundamental strategies for CST but also the combinatory application of these strategies to five types of the most-investigated semiconductor-based artificial photosynthesis systems: particulate, Z-scheme, hybrid, photoelectrochemical, and photovoltaics-assisted systems. We show that artificial photosynthesis systems with high SE-CE efficiency can be rationally designed and constructed through combinatory application of these strategies, setting a promising blueprint for the future of solar fuels.
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