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用于高效且机械稳定的柔性太阳能电池的钙钛矿薄膜自发双面封盖

Spontaneous bifacial capping of perovskite film for efficient and mechanically stable flexible solar cell.

作者信息

Jin Junjun, Zhu Zhenkun, Ming Yidong, Zhou Yuan, Shang Jitao, Wang Shaofu, Cui Xiaxia, Guo Tonghui, Zhang Dan, Tang Guanqi, Lin Qianqian, Li Jinhua, Liu Xiaowei, Liu Sheng, Chen Zhiwen, Hu Zhao, Meng Hong, Tai Qidong

机构信息

The Institute of Technological Sciences, Wuhan University, Wuhan, China.

School of Materials Science and Engineering, Hubei University, Wuhan, China.

出版信息

Nat Commun. 2025 Jan 2;16(1):90. doi: 10.1038/s41467-024-55652-6.

Abstract

Flexible perovskite solar cells (F-PSCs) are appealing for their flexibility and high power-to-weight ratios. However, the fragile grain boundaries (GBs) in perovskite films can lead to stress and strain cracks under bending conditions, limiting the performance and stability of F-PSCs. Herein, we show that the perovskite film can facilely achieve in situ bifacial capping via introducing 4-(methoxy)benzylamine hydrobromide (MeOBABr) as the precursor additive. The spontaneously formed MeOBABr capping layers flatten the grain boundary grooves (GBGs), enable the release of the mechanical stress at the GBs during bending, rendering enhanced film robustness. They also contribute to the reduction of the residual strain and the passivation of the surface defects of the perovskite film. Besides, the molecular polarity of MeOBABr can result in surface band bending of the perovskite that favors the interfacial charge extraction. The corresponding inverted F-PSCs based on nickel oxide (NiO)/poly(triaryl amine) (PTAA) hole transport bilayer reach a 23.7% power conversion efficiency (PCE) (22.9% certified) under AM 1.5 G illumination and a 42.46% PCE under 1000 lux indoor light illumination. Meanwhile, a robust bending durability of the device is also achieved.

摘要

柔性钙钛矿太阳能电池(F-PSC)因其灵活性和高功率重量比而备受关注。然而,钙钛矿薄膜中脆弱的晶界(GB)在弯曲条件下会导致应力和应变裂纹,限制了F-PSC的性能和稳定性。在此,我们表明,通过引入4-(甲氧基)苄胺氢溴酸盐(MeOBABr)作为前驱体添加剂,钙钛矿薄膜可以轻松实现原位双面封端。自发形成的MeOBABr封端层使晶界凹槽(GBG)变平,在弯曲过程中能够释放晶界处的机械应力,从而增强薄膜的坚固性。它们还有助于减少残余应变并钝化钙钛矿薄膜的表面缺陷。此外,MeOBABr的分子极性会导致钙钛矿的表面能带弯曲,有利于界面电荷提取。基于氧化镍(NiO)/聚(三芳基胺)(PTAA)空穴传输双层的相应倒置F-PSC在AM 1.5 G光照下的功率转换效率(PCE)达到23.7%(认证值为22.9%),在1000勒克斯室内光照下的PCE为42.46%。同时,该器件还实现了强大的弯曲耐久性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9810/11696051/cd9a5c1b38da/41467_2024_55652_Fig1_HTML.jpg

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