钙钛矿(结构)
材料科学
锡
带隙
能量转换效率
光伏系统
卤化物
纳米技术
太阳能电池
串联
化学工程
工程物理
光电子学
化学
冶金
无机化学
电气工程
物理
复合材料
工程类
作者
Shaoshen Lv,Weiyin Gao,Yanghua Liu,He Dong,Nan Sun,Tingting Niu,Yingdong Xia,Zhongbin Wu,Lin Song,Chenxin Ran,Li Fu,Yonghua Chen
标识
DOI:10.1016/j.jechem.2021.06.011
摘要
The exploration of low bandgap perovskite material to approach Shockley-Queisser limit of photovoltaic device is of great significance, but it is still challenging. During the past few years, tin–lead (Sn-Pb) mixed perovskites with low bandgaps have been rapidly developed, and their single junction solar cells have reached power conversion efficiency (PCE) over 21%, which also makes them ideal candidate as low bandgap sub-cell for tandem device. Nevertheless, due to the incorporation of unstable Sn2+, the stability issue becomes the vital problem for the further development of Sn-Pb mixed perovskite solar cells (PSCs). In this review, we are dedicated to give a full view in current understanding on the stability issue of Sn-Pb mixed perovskites and their PSCs. We begin with the demonstration on the origin of instability of Sn-Pb mixed perovskites, including oxidation of Sn2+, defects, and interfacial layer induced instability. Sequentially, the up-to-date developments on the stability improvement of Sn-Pb mixed perovskites and their PSCs is systematically reviewed, including composition engineering, additive engineering, and interfacial engineering. At last, the current challenges and future perspectives on the stability study of Sn-Pb mixed PSCs are discussed, which we hope could promote the further application of Sn-Pb mixed perovskites towards commercialization.
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