阴极
储能
材料科学
化学能
纳米技术
太阳能
异质结
光电化学电池
机制(生物学)
能量转换
接口(物质)
氧气储存
工艺工程
发电
电化学能量转换
析氧
催化作用
高效能源利用
电极
可再生能源
计算机科学
还原(数学)
工程物理
能源
光电子学
能量(信号处理)
氧还原反应
能源消耗
光伏系统
电气工程
能量转换效率
作者
Mengmeng Zhang,Haoxiang Wang,Yanlu Li,Xiangyu Liang
出处
期刊:Crystals
[Multidisciplinary Digital Publishing Institute]
日期:2025-10-27
卷期号:15 (11): 923-923
标识
DOI:10.3390/cryst15110923
摘要
The photo-assisted strategy is an effective technology that combines both photo and electrical energy conversion/storage, which represents the direction of the next generation of green energy utilization technologies. In particular, photo-assisted zinc–air batteries (PAZABs) are novel and innovative devices with the advantages of high efficiency and environmental friendliness. Thanks to the generation and effective separation of photo-generated carriers in photo-response air cathode catalysts, PAZABs possess significantly accelerated kinetics of oxygen reduction reaction and oxygen evolution reaction. Moreover, as a popular kind of newly developed two-electrode photoelectrochemical energy storage device, which could realize direct solar-to-electrochemical energy storage, PAZABs alleviate the limitations of the intermittent nature of solar energy in practical applications. In this study, the working mechanism of photoelectrochemical energy storage devices and PAZABs are thoroughly and systematically introduced; additionally, the design principles and types of photo-response electrode materials are reviewed. Interface engineering has been proven to be an effective strategy to improve the performance of the photo-response air cathode catalysts in PAZABs. Thus, the crucial role of the modulated interface chemistry of heterostructure air cathode catalysts is also summarized. Subsequently, the recent progress in the development of single-atom catalysts is outlined. Finally, this review presents several potential strategies for overcoming bottlenecks in the practical application of PAZABs.
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