Wang Xingtao, Zhang Chi, Liu Tiantian, Qin Shucheng, Lin Zizhen, Shi Congbo, Zhao Dongming, Zhao Zhiguo, Qin Xiaojun, Li Menglei, Wang Yong
Huaneng Clean Energy Research Institute, Beijing, 102209, China.
School of Chemistry and Chemical Engineering, Xi'an University of Architecture and Technology, Xi'an, 710055, China.
Small. 2024 Aug;20(32):e2311673. doi: 10.1002/smll.202311673. Epub 2024 Feb 29.
Inverted perovskite solar cells (PSCs) are considered as the most promising avenue for the commercialization of PSCs due to their potential inherent stability. However, suboptimal interface contacts between electron transport layer (ETL) (such as C) and the perovskite absorbing layer within inverted PSCs always result in reduced efficiency and poor stability. Herein, a surface state manipulation strategy has been developed by employing a highly electronegative 4-fluorophenethylamine hydrochloride (p-F-PEACl) to effectively address the issue of poor interface contacts in the inverted PSCs. The p-F-PEACl demonstrates a robust interaction with perovskite film through bonding of amino group and Cl with I and Pb ions in the perovskite, respectively. As such, the surface defects of perovskite film can be significantly reduced, leading to suppressed non-radiative recombination. Moreover, p-F-PEACl also plays a dual role in enhancing the surface potential and improving energy-level alignment at the interfaces between the perovskite and C carrier transport layer, which directly contributes to efficient charge extraction. Finally, the open-circuit voltage (V) of devices increases from 1.104 V to 1.157 V, leading to an overall efficiency improvement from 22.34% to 24.78%. Furthermore, the p-F-PEACl-treated PSCs also display excellent stability.
倒置钙钛矿太阳能电池(PSCs)因其潜在的固有稳定性而被认为是PSCs商业化最有前景的途径。然而,倒置PSCs中电子传输层(ETL)(如C)与钙钛矿吸收层之间的界面接触不理想,总是导致效率降低和稳定性差。在此,通过使用高电负性的4-氟苯乙胺盐酸盐(p-F-PEACl)开发了一种表面态调控策略,以有效解决倒置PSCs中界面接触不良的问题。p-F-PEACl通过其氨基和Cl分别与钙钛矿中的I和Pb离子键合,与钙钛矿薄膜表现出强烈的相互作用。因此,钙钛矿薄膜的表面缺陷可以显著减少,从而抑制非辐射复合。此外,p-F-PEACl在增强表面电位和改善钙钛矿与C载流子传输层之间界面的能级匹配方面也发挥了双重作用,这直接有助于高效电荷提取。最后,器件的开路电压(V)从1.104 V提高到1.157 V,导致整体效率从22.34%提高到24.78%。此外,经p-F-PEACl处理的PSCs也表现出优异的稳定性。