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用于n-i-p平面钙钛矿太阳能电池的碱金属氟化物改性氧化锡

Alkali Metal Fluoride-Modified Tin Oxide for n-i-p Planar Perovskite Solar Cells.

作者信息

Wang Chunyan, Wu Jihuai, Wang Shibo, Liu Xuping, Wang Xiaobing, Yan Zhongliang, Chen Liqiang, Liu Xiao, Li Guodong, Sun Weihai, Lan Zhang

机构信息

Engineering Research Center of Environment-Friendly Functional Materials, Ministry of Education, Institute of Materials Physical Chemistry, Huaqiao University, Xiamen 361021, China.

出版信息

ACS Appl Mater Interfaces. 2021 Oct 27;13(42):50083-50092. doi: 10.1021/acsami.1c16519. Epub 2021 Oct 14.

Abstract

The practical applications of perovskite solar cells (PSCs) are limited by further improvement of their stability and performance. Additive engineering and interface engineering are promising medicine to cure this stubborn disease. Herein, an alkali metal fluoride as an additive is introduced into the tin oxide (SnO) electron transport layer (ETL). The formation of coordination bonds of F ions with the oxygen vacancy of Sn ions decreases the trap-state density and improves the electron mobility; the hydrogen bond interaction between the F ion and amine group (FA) of perovskite inhibits the diffusion of organic cations and promotes perovskite (PVK) stability. Meanwhile, the alkali metal ions (K, Rb, and Cs) permeated into PVK fill the organic cation vacancies and ameliorate the crystal quality of PVK films. Consequently, a SnO-based planar PSC exhibits a power conversion efficiency (PCE) of 20.24%, while the PSC modified by CsF achieves a PCE of 22.51%, accompanied by effective enhancement of stability and negligible hysteresis. The research results provide a typical example for low-cost and multifunctional additives in high-performance PSCs.

摘要

钙钛矿太阳能电池(PSCs)的实际应用受到其稳定性和性能进一步提升的限制。添加剂工程和界面工程是治疗这一顽疾的有效方法。在此,将一种碱金属氟化物作为添加剂引入氧化锡(SnO)电子传输层(ETL)。F离子与Sn离子的氧空位形成配位键,降低了陷阱态密度并提高了电子迁移率;F离子与钙钛矿的胺基(FA)之间的氢键相互作用抑制了有机阳离子的扩散并促进了钙钛矿(PVK)的稳定性。同时,渗透到PVK中的碱金属离子(K、Rb和Cs)填充了有机阳离子空位并改善了PVK薄膜的晶体质量。因此,基于SnO的平面PSCs的功率转换效率(PCE)为20.24%,而经CsF改性的PSCs的PCE达到22.51%,同时稳定性得到有效增强且滞后可忽略不计。研究结果为高性能PSCs中的低成本多功能添加剂提供了一个典型实例。

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