功能高分子材料教育部重点实验室

近期发表论文
当前位置: 首页 > 科技创新 > 近期发表论文 > 正文

刘永胜课题组 | NANO LETTERS

发布人:    发布时间:2022/07/06   浏览次数:

CsPbl(3)-Based Phase-Stable 2D Ruddlesden-Popper Perovskites for Efficient Solar Cells

By:

Xu, ZY (Xu, Zhiyuan) [1] , [2] ; Li, L (Li, Ling) [3] , [4] ; Dong, XY (Dong, Xiyue) [1] , [2] ; Lu, D (Lu, Di) [1] , [2] ; Wang, R (Wang, Rui) [1] , [2] ; Yin, WJ (Yin, Wan-Jian) [3] , [4] ; Liu, YS (Liu, Yongsheng) [1] , [2] , [5]

NANO LETTERS, 2022,  22( 7):  2874-2880

DOI

10.1021/acs.nanolett.2c00002

Abstract

Inorganic CsPbI3 perovskite has shown great promise in highly stable perovskite solar cells due to the lack of volatile organic components. However, the inferior phase stability in ambient conditions resulted from the very small Cs+, limiting their practical applications. Here, CsPbI3-based 2D Ruddlesden-Popper (RP) perovskites were developed using two thiophene-based aromatic spacers, namely, 2-thiophenemethylamine hydroiodide (ThMA) and 2-thiopheneformamidine hydroiodide (ThFA), which significantly improved the phase stability by releasing the large inner stress of black-phase CsPbI3. The optimized ThFA-based 2D RP perovskite (n = 5, ThFA-Cs) device achieves a record efficiency of 16.00%. Importantly, the ThFA-Cs devices could maintain an average of 98% of their initial efficiencies after being stored in N-2 at room temperature for 3000 h and 92% of their initial value at 80 degrees C for 960 h. This work provides a new perspective for exploration of the phase-stable CsPbI3-based perovskite with reduced dimensions for high-performance solar cells.