Xu Yumeng, Guo Xing, Lin Zhenhua, Wang Qingrui, Su Jie, Zhang Jincheng, Hao Yue, Yang Keke, Chang Jingjing
Department State Key Discipline Laboratory of Wide Band Gap Semiconductor Technology, School of Microelectronics, Xidian University, 710071, Xi'an, China.
Advanced Interdisciplinary Research Center for Flexible Electronics, Academy of Advanced Interdisciplinary Research, Xidian University, 710071, Xi'an, China.
Angew Chem Int Ed Engl. 2023 Aug 14;62(33):e202306229. doi: 10.1002/anie.202306229. Epub 2023 Jul 4.
Perovskite solar cells (PSCs) are considered as a promising photovoltaic technology due to their high efficiency and low cost. However, their long-term stability, mechanical durability, and environmental risks are still unable to meet practical needs. To overcome these issues, we designed a multifunctional elastomer with abundant hydrogen bonds and carbonyl groups. The chemical bonding between polymer and perovskite could increase the growth activation energy of perovskite film and promote the preferential growth of high-quality perovskite film. Owing to the low defect density and gradient energy-level alignment, the corresponding device exhibited a champion efficiency of 23.10 %. Furthermore, due to the formation of the hydrogen-bonded polymer network in the perovskite film, the target devices demonstrated excellent air stability and enhanced flexibility for the flexible PSCs. More importantly, the polymer network could coordinate with Pb ions, immobilizing lead atoms to reduce their release into the environment. This strategy paves the way for the industrialization of high-performance flexible PSCs.
钙钛矿太阳能电池(PSCs)因其高效率和低成本而被视为一种很有前景的光伏技术。然而,它们的长期稳定性、机械耐久性和环境风险仍无法满足实际需求。为了克服这些问题,我们设计了一种具有大量氢键和羰基的多功能弹性体。聚合物与钙钛矿之间的化学键合可以提高钙钛矿薄膜的生长活化能,并促进高质量钙钛矿薄膜的择优生长。由于低缺陷密度和梯度能级排列,相应器件的冠军效率达到了23.10%。此外,由于在钙钛矿薄膜中形成了氢键聚合物网络,目标器件表现出优异的空气稳定性,并增强了柔性PSC的柔韧性。更重要的是,聚合物网络可以与铅离子配位,固定铅原子以减少其释放到环境中。该策略为高性能柔性PSC的工业化铺平了道路。