串联
钙钛矿(结构)
材料科学
光伏系统
氧化铟锡
介孔材料
能量转换效率
混合太阳能电池
光电子学
量子点太阳电池
纳米技术
薄膜
聚合物太阳能电池
化学工程
化学
复合材料
电气工程
生物化学
工程类
催化作用
作者
Ting Ye,Jan Christoph,Jiale Liu,Ying Yang,Wenhao Zhang,Hairen Tan,Anyi Mei,Yaoguang Rong,Yue Hu,Hongwei Han
标识
DOI:10.1002/ente.202200524
摘要
The boosting efficiency of perovskite solar cells (PSCs) has evoked the interest in applying them in tandem structures, especially perovskite/silicon tandem solar cells. However, the tandem solar cells still face concerns about stability, upscaling, and cost‐effectiveness on the path to commercialization. Herein, an innovative tandem architecture based on the printable mesoscopic perovskite solar cells is proposed. By investigating the effects of indium tin oxide (ITO) particle size, annealing temperature, and dispersant on the performance of ITO mesoporous films, screen‐printable mesoscopic ITO electrode with an electron mobility of 7.5 cm 2 V −1 s −1 and an average visible transmittance of over 80% is successfully obtained. The screen‐printed mesoporous titania, zirconia, and ITO are used as a scaffold and a semitransparent PSC with a champion power conversion efficiency of 9.38% is fabricated infiltrated with perovskites. Further, a perovskite/silicon tandem device which can remain stable for >720 h is demonstrated, highlighting the potential of screen‐printed inorganic scaffold structure in tandem photovoltaic technique.
科研通智能强力驱动
Strongly Powered by AbleSci AI