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钙钛矿材料中离子迁移的抑制作用——阳离子-π 相互作用在高效稳定钙钛矿太阳能电池中的应用。

Ion-Migration Inhibition by the Cation-π Interaction in Perovskite Materials for Efficient and Stable Perovskite Solar Cells.

机构信息

State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, School of Renewable Energy, North China Electric Power University, Beijing, 102206, China.

Key Lab of Organic Optoelectronics and Molecular Engineering of Ministry of Education, Department of Chemistry, Tsinghua University, Beijing, 100084, China.

出版信息

Adv Mater. 2018 Aug;30(31):e1707583. doi: 10.1002/adma.201707583. Epub 2018 Jun 25.

Abstract

Migration of ions can lead to photoinduced phase separation, degradation, and current-voltage hysteresis in perovskite solar cells (PSCs), and has become a serious drawback for the organic-inorganic hybrid perovskite materials (OIPs). Here, the inhibition of ion migration is realized by the supramolecular cation-π interaction between aromatic rubrene and organic cations in OIPs. The energy of the cation-π interaction between rubrene and perovskite is found to be as strong as 1.5 eV, which is enough to immobilize the organic cations in OIPs; this will thus will lead to the obvious reduction of defects in perovskite films and outstanding stability in devices. By employing the cation-immobilized OIPs to fabricate perovskite solar cells (PSCs), a champion efficiency of 20.86% and certified efficiency of 20.80% with negligible hysteresis are acquired. In addition, the long-term stability of cation-immobilized PSCs is improved definitely (98% of the initial efficiency after 720 h operation), which is assigned to the inhibition of ionic diffusions in cation-immobilized OIPs. This cation-π interaction between cations and the supramolecular π system enhances the stability and the performance of PSCs efficiently and would be a potential universal approach to get the more stable perovskite devices.

摘要

离子迁移会导致钙钛矿太阳能电池(PSCs)中的光致相分离、降解和电流-电压滞后,这已成为有机-无机杂化钙钛矿材料(OIPs)的严重缺点。在这里,通过芳香族苝与 OIPs 中的有机阳离子之间的超分子阳离子-π 相互作用来实现抑制离子迁移。发现苝与钙钛矿之间的阳离子-π 相互作用的能量与 1.5eV 一样强,足以固定 OIPs 中的有机阳离子;这将导致钙钛矿薄膜中的缺陷明显减少,器件稳定性出色。通过采用固定阳离子的 OIPs 来制备钙钛矿太阳能电池(PSCs),获得了 20.86%的冠军效率和 20.80%的认证效率,且几乎没有滞后。此外,固定阳离子的 PSCs 的长期稳定性得到了明显提高(经过 720 小时的运行后,初始效率的 98%),这归因于固定阳离子的 OIPs 中抑制了离子扩散。阳离子与超分子π 体系之间的这种阳离子-π 相互作用可有效地提高 PSCs 的稳定性和性能,这将是获得更稳定的钙钛矿器件的一种有潜力的通用方法。

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