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

机译:钙钛矿材料中阳离子-π相互作用对钙钛矿高效稳定电池的离子迁移抑制。

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摘要

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-pi interaction between aromatic rubrene and organic cations in OIPs. The energy of the cation-pi 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-pi interaction between cations and the supramolecular pi system enhances the stability and the performance of PSCs efficiently and would be a potential universal approach to get the more stable perovskite devices.
机译:离子的迁移会导致钙钛矿太阳能电池(PSC)中的光诱导相分离,降解和电流-电压滞后现象,并且已成为有机-无机杂化钙钛矿材料(OIP)的严重缺陷。在这里,离子迁移的抑制是通过OIP中芳香族红荧烯与有机阳离子之间的超分子阳离子-π相互作用实现的。发现红荧烯和钙钛矿之间的阳离子-π相互作用的能量高达1.5 eV,足以固定OIP中的有机阳离子。因此,这将导致钙钛矿薄膜中缺陷的明显减少和装置的出色稳定性。通过使用固定化阳离子的OIP来制造钙钛矿型太阳能电池(PSC),可获得的滞后效应可以忽略不计的冠军效率为20.86%,认证效率为20.80%。此外,固定化阳离子的PSC的长期稳定性也得到了明显的改善(720h运行后初始效率的98%),这归因于抑制固定化阳离子的OIP中离子的扩散。阳离子与超分子pi系统之间的这种阳离子-pi相互作用有效地提高了PSC的稳定性和性能,将成为获得更稳定的钙钛矿设备的潜在通用方法。

著录项

  • 来源
    《Advanced Materials》 |2018年第31期|1707583.1-1707583.10|共10页
  • 作者单位

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    Tsinghua Univ, Dept Chem, Minist Educ, Key Lab Organ Optoelect & Mol Engn, Beijing 100084, Peoples R China;

    Tsinghua Univ, Dept Chem, Minist Educ, Key Lab Organ Optoelect & Mol Engn, Beijing 100084, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    Chinese Acad Sci, Inst Elect Engn, Key Lab Solar Thermal Energy & Photovolta Syst, Beijing 100190, Peoples R China;

    Chinese Acad Sci, Inst Elect Engn, Key Lab Solar Thermal Energy & Photovolta Syst, Beijing 100190, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

    Tsinghua Univ, Dept Chem, Minist Educ, Key Lab Organ Optoelect & Mol Engn, Beijing 100084, Peoples R China;

    Cent S Univ, Sch Phys & Elect, Hunan Key Lab Super Microstruct & Ultrafast Proc, Changsha 410083, Hunan, Peoples R China;

    North China Elect Power Univ, Sch Renewable Energy, State Key Lab Alternate Elect Power Syst Renewabl, Beijing 102206, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cation-pi interaction; calculations; efficient and stable perovskite solar cells; ion migration inhibition; perovskite materials;

    机译:阳离子-π相互作用;计算;钙钛矿高效稳定的太阳能电池;离子迁移抑制;钙钛矿材料;

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