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通过丁内酯分子调控钙钛矿太阳能电池的结晶和缺陷钝化

Modulating Crystallization and Defect Passivation by Butyrolactone Molecule for Perovskite Solar Cells.

作者信息

Wang Fengyou, Du Jinyue, Zhao Chenyu, Li Yutao, Wei Maobin, Liu Huilian, Yang Jinghai, Yang Lili

机构信息

Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education, Jilin Normal University, Changchun 130103, China.

National Demonstration Center for Experimental Physics Education, Jilin Normal University, Siping 136000, China.

出版信息

Molecules. 2023 Jul 20;28(14):5542. doi: 10.3390/molecules28145542.

Abstract

The attainment of a well-crystallized photo-absorbing layer with minimal defects is crucial for achieving high photovoltaic performance in polycrystalline solar cells. However, in the case of perovskite solar cells (PSCs), precise control over crystallization and elemental distribution through solution processing remains a challenge. In this study, we propose the use of a multifunctional molecule, α-amino-γ-butyrolactone (ABL), as a modulator to simultaneously enhance crystallization and passivate defects, thereby improving film quality and deactivating nonradiative recombination centers in the perovskite absorber. The Lewis base groups present in ABL facilitate nucleation, leading to enhanced crystallinity, while also retarding crystallization. Additionally, ABL effectively passivates Pb dangling bonds, which are major deep-level defects in perovskite films. This passivation process reduces recombination losses, promotes carrier transfer and extraction, and further improves efficiency. Consequently, the PSCs incorporating the ABL additive exhibit an increase in conversion efficiency from 18.30% to 20.36%, along with improved long-term environmental stability. We believe that this research will contribute to the design of additive molecular structures and the engineering of components in perovskite precursor colloids.

摘要

获得具有最少缺陷的良好结晶光吸收层对于在多晶太阳能电池中实现高光伏性能至关重要。然而,对于钙钛矿太阳能电池(PSC)而言,通过溶液处理精确控制结晶和元素分布仍然是一项挑战。在本研究中,我们提出使用多功能分子α-氨基-γ-丁内酯(ABL)作为调节剂,以同时增强结晶和钝化缺陷,从而改善薄膜质量并使钙钛矿吸收体中的非辐射复合中心失活。ABL中存在的路易斯碱基团促进成核,导致结晶度提高,同时也延缓结晶。此外,ABL有效地钝化了钙钛矿薄膜中的主要深层缺陷——Pb悬空键。这种钝化过程减少了复合损失,促进了载流子转移和提取,并进一步提高了效率。因此,掺入ABL添加剂的PSC的转换效率从18.30%提高到20.36%,同时长期环境稳定性也得到改善。我们相信这项研究将有助于钙钛矿前驱体胶体中添加剂分子结构的设计和组件工程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b761/10383146/a03b39999372/molecules-28-05542-g001.jpg

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