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通过层间空间交替阳离子和多位点配体对二维钙钛矿进行协同改性以制备高性能倒置太阳能电池。

Synergistic Modification of 2D Perovskite with Alternating Cations in the Interlayer Space and Multisite Ligand toward High-Performance Inverted Solar Cells.

作者信息

Zhuang Qixin, Li Haiyun, Zhang Cong, Gong Cheng, Yang Hua, Chen Jiangzhao, Zang Zhigang

机构信息

Key Laboratory of Optoelectronic Technology and Systems (Ministry of Education), Chongqing University, Chongqing, 400044, China.

Institute of High Energy Physics, Chinese Academy of Sciences (CAS), Beijing, 100049, China.

出版信息

Adv Mater. 2023 Aug;35(33):e2303275. doi: 10.1002/adma.202303275. Epub 2023 Jul 1.

Abstract

The preparation of high-quality perovskite films is key to realize efficient and stable inverted perovskite solar cells. The trap-assisted nonradiative recombination at grain boundary (GB) and surface poses a serious challenge for fabricating high-quality perovskite films. Here, a synergistic modulation strategy of two-dimensional (2D) perovskite with alternating cations in the interlayer space (ACI) and multisite ligand 2-mercapto-1,3,4-thiadiazole (MTD) for fabricating high-quality methylammonium-free perovskite films is reported. The formation of ACI 2D perovskite promotes the nucleation of three-dimensional (3D) perovskites, suppresses the generation of yellow phase, and promotes the formation of black phase, leading to increased grain size and crystallinity. Due to the synergistic effect of ACI 2D perovskite and MTD, the defects at GBs and surface are healed simultaneously. The significantly inhibited nonradiative recombination enables realization of high-efficiency inverted devices with a fascinating power conversion efficiency (PCE) of 24.58%, which is one of the highest PCEs reported for inverted devices. The synergistically modified unsealed device demonstrates an excellent long-term ambient stability, retaining 90.5% of its initial PCE after 3000 h under a relative humidity of 30-40%. This work provides deep insights into minimizing nonradiative recombination losses through the rational synergistic engineering of GB and surface toward efficient and stable inverted devices.

摘要

制备高质量的钙钛矿薄膜是实现高效稳定的倒置钙钛矿太阳能电池的关键。晶界(GB)和表面处的陷阱辅助非辐射复合对制备高质量的钙钛矿薄膜构成了严峻挑战。在此,报道了一种用于制备高质量无甲铵钙钛矿薄膜的协同调制策略,即利用层间空间中交替阳离子(ACI)的二维(2D)钙钛矿和多位配体2-巯基-1,3,4-噻二唑(MTD)。ACI 2D钙钛矿的形成促进了三维(3D)钙钛矿的成核,抑制了黄相的产生,并促进了黑相的形成,从而导致晶粒尺寸和结晶度增加。由于ACI 2D钙钛矿和MTD的协同作用,GBs和表面处的缺陷同时得到修复。显著抑制的非辐射复合使得能够实现具有24.58%的出色功率转换效率(PCE)的高效倒置器件,这是报道的倒置器件中最高的PCE之一。经协同改性的未密封器件表现出优异的长期环境稳定性,在30 - 40%的相对湿度下3000小时后仍保留其初始PCE的90.5%。这项工作通过对GB和表面进行合理的协同工程,深入了解了如何最小化非辐射复合损失,以实现高效稳定的倒置器件。

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