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调控甲基碘化锡铵的结晶动力学和晶体取向可实现高效无铅钙钛矿太阳能电池。

Regulating crystallization dynamics and crystal orientation of methylammonium tin iodide enables high-efficiency lead-free perovskite solar cells.

作者信息

Ji Long, Zhang Ting, Wang Yafei, Liu Detao, Chen Hao, Zheng Hualin, Peng Xuefeng, Yuan Shihao, Chen Zhi David, Li Shibin

机构信息

School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China (UESTC), Chengdu, Sichuan 610054, China.

Laboratory of Photonics and Interfaces, Institute of Chemical Sciences and Engineering, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

Nanoscale. 2022 Jan 27;14(4):1219-1225. doi: 10.1039/d1nr06802d.

Abstract

Tin (Sn)-based perovskite solar cells (PSCs) have attracted much attention because they are more environmentally friendly than lead-based PSCs. However, the fast crystallization of Sn-based perovskite films and the easy oxidation of Sn to Sn hinder the improvement of their efficiency and stability. In this work, ethylammonium bromide (EABr) was added to methylammonium tin iodide (MASnI) perovskite precursor solution to regulate the crystallization dynamics and improve the film morphology. The results show that the large EA ions slow down the crystallization process of Sn-based perovskites and form a smooth perovskite film with high crystallinity, while the added Br anions further improved the crystallinity and orientation of the perovskite film. Under the combined action of EA and Br ions, the as-produced PSCs achieved a champion power conversion efficiency (PCE) of 9.59%. The EABr additive also retarded the oxidation of Sn, and the solar cell device maintained 93% of its initial efficiency after 30 days in a nitrogen-filled glove box without being encapsulated. This work provides a new strategy for the realization of high-efficiency Sn-based PSCs.

摘要

锡(Sn)基钙钛矿太阳能电池(PSC)因其比铅基PSC更环保而备受关注。然而,Sn基钙钛矿薄膜的快速结晶以及Sn易氧化为Sn阻碍了其效率和稳定性的提高。在这项工作中,将溴化乙铵(EABr)添加到甲基碘化锡铵(MASnI)钙钛矿前驱体溶液中,以调节结晶动力学并改善薄膜形态。结果表明,大的EA离子减缓了Sn基钙钛矿的结晶过程,并形成了具有高结晶度的光滑钙钛矿薄膜,而添加的Br阴离子进一步提高了钙钛矿薄膜的结晶度和取向。在EA和Br离子的共同作用下,所制备的PSC实现了9.59%的最佳功率转换效率(PCE)。EABr添加剂还延缓了Sn的氧化,并且该太阳能电池器件在充满氮气的手套箱中放置30天后,未封装的情况下仍保持其初始效率的93%。这项工作为实现高效Sn基PSC提供了一种新策略。

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