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解决无甲铵锡铅合金钙钛矿中的混合中间相以制备高性能太阳能电池

Resolving Mixed Intermediate Phases in Methylammonium-Free Sn-Pb Alloyed Perovskites for High-Performance Solar Cells.

作者信息

Zhang Zhanfei, Liang Jianghu, Wang Jianli, Zheng Yiting, Wu Xueyun, Tian Congcong, Sun Anxin, Chen Zhenhua, Chen Chun-Chao

机构信息

School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai, 20024, People's Republic of China.

Shanghai Synchrotron Radiation Facility (SSRF), Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai, 201800, People's Republic of China.

出版信息

Nanomicro Lett. 2022 Aug 16;14(1):165. doi: 10.1007/s40820-022-00918-1.

Abstract

The complete elimination of methylammonium (MA) cations in Sn-Pb composites can extend their light and thermal stabilities. Unfortunately, MA-free Sn-Pb alloyed perovskite thin films suffer from wrinkled surfaces and poor crystallization, due to the coexistence of mixed intermediate phases. Here, we report an additive strategy for finely regulating the impurities in the intermediate phase of CsFAPbSnI and, thereby, obtaining high-performance solar cells. We introduced d-homoserine lactone hydrochloride (D-HLH) to form hydrogen bonds and strong Pb-O/Sn-O bonds with perovskite precursors, thereby weakening the incomplete complexation effect between polar aprotic solvents (e.g., DMSO) and organic (FAI) or inorganic (CsI, PbI, and SnI) components, and balancing their nucleation processes. This treatment completely transformed mixed intermediate phases into pure preformed perovskite nuclei prior to thermal annealing. Besides, this D-HLH substantially inhibited the oxidation of Sn species. This strategy generated a record efficiency of 21.61%, with a V of 0.88 V for an MA-free Sn-Pb device, and an efficiency of 23.82% for its tandem device. The unencapsulated devices displayed impressive thermal stability at 85 °C for 300 h and much improved continuous operation stability at MPP for 120 h.

摘要

在锡铅复合材料中完全消除甲铵(MA)阳离子可以延长其光稳定性和热稳定性。不幸的是,由于混合中间相的共存,无MA的锡铅合金钙钛矿薄膜存在表面起皱和结晶性差的问题。在此,我们报告一种添加剂策略,用于精细调节CsFAPbSnI中间相中的杂质,从而获得高性能太阳能电池。我们引入盐酸d-高丝氨酸内酯(D-HLH)与钙钛矿前驱体形成氢键和强Pb-O/Sn-O键,从而削弱极性非质子溶剂(如DMSO)与有机(FAI)或无机(CsI、PbI和SnI)组分之间不完全的络合作用,并平衡它们的成核过程。这种处理在热退火之前将混合中间相完全转变为纯的预制钙钛矿核。此外,这种D-HLH大大抑制了锡物种的氧化。该策略使无MA的锡铅器件的效率达到创纪录的21.61%,开路电压为0.88 V,其串联器件的效率为23.82%。未封装的器件在85°C下保持300小时显示出令人印象深刻的热稳定性,在最大功率点(MPP)下连续运行120小时的稳定性也有很大提高。

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