材料科学
钙钛矿(结构)
光伏系统
工程物理
系统工程
纳米技术
物联网
太阳能
可持续发展
可持续能源
可穿戴技术
可穿戴计算机
机制(生物学)
可再生能源
能量密度
低能
互联网
高效能源利用
数码产品
新能源
发电
能量(信号处理)
风险分析(工程)
清洁能源
储能
功率(物理)
光伏
建筑工程
性能增强
技术开发
能源管理
计算机科学
作者
Wendong Zhu,Rong Xuan,Yuhong Xu,Xinlei Gan,Qiuxiang Wang,Jiaxing Xiong,Xiaohui Liu,Like Huang,Jing Zhang,Qidong Tai,Yingguo Yang,Jing Cuan,Weiping Li,Yuejin Zhu,Liyuan Han
标识
DOI:10.1002/adfm.202515939
摘要
Abstract With the rapid development of the new generation of self‐powered pocket electronic devices, the demand for sustainable and self‐sufficient power sources has become increasingly critical. Photo‐rechargeable batteries, as an efficient energy‐saving alternative to traditional energy sources, offer substantial societal benefits in modern life. Rechargeable zinc‐ion batteries integrated with perovskite solar cells (PSC‐ZIBs), characterized by both high outdoor and indoor efficiencies, light‐weight, and non‐flammability properties, hold great promise for applications in wearable devices, indoor photovoltaics, energy recycling, and other fields. This review comprehensively summarizes the development of PSC‐ZIBs. A meticulous discussion is presented regarding its mechanism and front‐edge development, such as the structural optimization and performance improvement of PSC‐ZIBs hybrid systems. Special emphasis is placed on the application prospects of Internet of Things (IoT) devices and indoor photovoltaic scenarios, which benefit from the PSC and ZIB units. Finally, perspectives, critical insight, and recommendations for future research are provided, aiming to facilitate the development of high‐performance PSC‐ZIBs devices and promote their practical implementation.
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