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用于修复钙钛矿太阳能电池的通用动态液体界面

Universal Dynamic Liquid Interface for Healing Perovskite Solar Cells.

作者信息

Guo Qiyao, Duan Jialong, Zhang Junshuai, Zhang Qiaoyu, Duan Yanyan, Yang Xiya, He Benlin, Zhao Yuanyuan, Tang Qunwei

机构信息

College of Information Science and Technology, Jinan University, Guangzhou, 510632, P. R. China.

State Centre for International Cooperation on Designer Low-Carbon and Environmental Material (SCICDLCEM), School of Materials Science and Engineering, Zhengzhou University, Zhengzhou, 450001, P. R. China.

出版信息

Adv Mater. 2022 Jul;34(26):e2202301. doi: 10.1002/adma.202202301. Epub 2022 May 24.

Abstract

Healing charge-selective contact interfaces in perovskite solar cells (PSCs) highly determines the power conversion efficiency (PCE) and stability. However, the state-of-the-art strategies are often static by one-off formation of a functional interlayer, which delivers fixed interfacial properties during the subsequent operation. As a result, defects formed in-service will gradually deteriorate the photovoltaic performances. Herein, a dynamic healing interface (DHI) is presented by incorporating a low-melting-point small molecule onto perovskite film surface for highly efficient and stable PSCs. Arising from the reduced non-radiative recombination, the DHI boosts the PCE to 12.05% for an all-inorganic CsPbIBr solar cell and 14.14% for a CsPbI Br cell, as well as 23.37% for an FA MA PbI (FA = formamidinium, MA = methylammonium) cell. The solid-to-liquid phase conversion of DHI at elevated temperature causes a longitudinal infiltration into the bulk perovskite film to maximize the charge extraction, passivate defects at grain boundaries, and suppress ion migration. Furthermore, the stability is remarkably enhanced under air, heat, and persistent light-irradiation conditions, paving a universal strategy for advanced perovskite-based optoelectronics.

摘要

钙钛矿太阳能电池(PSCs)中具有修复功能的电荷选择性接触界面极大地决定了功率转换效率(PCE)和稳定性。然而,目前的先进策略通常是通过一次性形成功能中间层来实现的,这在后续运行过程中会提供固定的界面特性。因此,运行过程中形成的缺陷会逐渐降低光伏性能。在此,通过在钙钛矿薄膜表面引入一种低熔点小分子,提出了一种动态修复界面(DHI),用于制备高效稳定的PSCs。由于非辐射复合的减少,DHI将全无机CsPbIBr太阳能电池的PCE提高到12.05%,将CsPbI Br电池的PCE提高到14.14%,将FA MA PbI(FA = 甲脒,MA = 甲基铵)电池的PCE提高到23.37%。DHI在高温下的固-液相转变会导致其纵向渗透到钙钛矿本体薄膜中,从而最大限度地提高电荷提取效率、钝化晶界处的缺陷并抑制离子迁移。此外,在空气、热和持续光照条件下,稳定性显著提高,为先进的钙钛矿基光电器件开辟了一条通用策略。

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