A multifunctional and scalable fullerene electron transporting material for efficient inverted perovskite solar cells and modules

被引:0
|
作者
Kangrong Yan
Ziqiu Shen
Benfang Niu
Yanchun Huang
Di Wang
Emely Gu
Buyi Yan
Jizhong Yao
Hongzheng Chen
Chang-Zhi Li
机构
[1] Zhejiang University,State Key Laboratory of Silicon Materials, Department of Polymer Science and Engineering
[2] Hangzhou Microquanta Semiconductor Co. LTD.,undefined
来源
Science China Chemistry | 2023年 / 66卷
关键词
fullerene derivative; interface; electron transporting material; perovskite solar cells;
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学科分类号
摘要
The interfacial properties between charge transporting material and perovskite (PVSK) play critical roles in governing the photovoltaic performances of perovskite solar cells (PVSCs). Herein, we develop a multifunctional fulleropyrrolidine (FMG) as an electron transporting material (ETM), which facilitates the construction of efficient and stable inverted PVSCs and modules. It revealed that the facile and scalable FMG possesses not only excellent electron extraction capabilities, but also multi-groups to simultaneously passivate PVSKs via Lewis acid-base and hydrogen bonding interactions. The coating of FMG onto PVSK interestingly yields a dense and interactive layer with the graded ETM-PVSK heterojunction architecture. As results, FMG-based PVSCs demonstrate a champion efficiency of 23.8%, outperforming 21.0% of PCBM-based devices. FMG could also be utilized to improve photovoltaic performance of large-scale modules. In addition, FMG has successfully elongated the lifetime of the corresponding PVSCs, maintaining 85% of the initial performance after the continuous 60-day one sun equivalent illumination in ambient.
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页码:1795 / 1803
页数:8
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