材料科学
钙钛矿(结构)
透明度(行为)
光伏系统
复合数
光学透明度
能量转换效率
光电子学
化学工程
纳米技术
复合材料
计算机科学
电气工程
计算机安全
工程类
作者
Yu Xia,Xiao Liang,Yun Jiang,Shaofu Wang,Yuyang Qi,Yumin Liu,Li Yu,Huai Yang,Xingzhong Zhao
标识
DOI:10.1002/aenm.201900720
摘要
Abstract Smart photovoltaic windows (SPWs) are functional devices possessing the capabilities of electrical power output, energy saving, and privacy protection by managing sunlight under external stimuli and potentially applicable in the fields of energy‐saving buildings, automobiles, and switchable optoelectronics. However, long response time, low power conversion efficiency (PCE), poor stability and cycling performance, and monostimuli responsive behavior restrict their practical applications. To address these issues, high‐efficiency and reliable SPWs are demonstrated by coupling multiresponsive liquid crystal/polymer composite (LCPC) films and semi‐transparent perovskite solar cells (ST‐PSCs). In this design, fast and multiple stimuli‐responsive LCPC films are utilized as an inside layer to control the transparency of SPWs. The ST‐PSCs with competitive PCE and qualified transparency acting as an outside layer offer energy generation functionality. Benefiting from repeatable transparency transition modulated by external stimuli, a series of working modes are achieved in the SPWs providing distinguished and stable energy generation, energy saving, and privacy protection performances.
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