串联
钙钛矿(结构)
硅
材料科学
沉积(地质)
气团(太阳能)
光电子学
化学工程
航空航天工程
地质学
工程类
复合材料
古生物学
边界层
沉积物
作者
Jiahao Fang,Weiwei Chen,Shaojie Yuan,Shaofei Yang,Hongguang Meng,Kaitian Mao,Tieqiang Li,Zhengjie Zhu,Xingyu Feng,Huitian Guo,Lianyou Tang,Jinshuai Zhang,Xiang He,Fei Qin,Cao Yu,Jian Zhou,Yi Cui,Jixian Xu
标识
DOI:10.1021/acsmaterialslett.4c01687
摘要
Hybrid sequential deposition (HSD) of perovskite thin films is highly desirable for constructing tandem solar cells on textured silicon substrates. However, in the second step of HSD, where the inorganic and organic bilayers undergo thermal interdiffusion to form perovskite, performance is often limited by the need for a very dry environment (inert gas atmosphere or dry air with relative humidity below 10%) and incomplete reactions throughout the film thickness. Here, we demonstrate a longitudinal homogenized intermediate (LHI) strategy that enables the preparation of HSD perovskites under ambient conditions (25 °C, 30%–50% relative humidity). This approach circumvents the formation of a perovskite capping layer, promoting uniform interdiffusion of the organic–inorganic bilayer. As a result, the efficiency of 1.68 eV perovskite solar cells processed in air using HSD improved from 16.42% to 20.65%, leading to an efficiency of 28.55% for textured perovskite/silicon tandem cells.
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