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Polar molecules modify perovskite surface to reduce recombination in perovskite solar cells

机译:极性分子改变钙钛矿表面以减少钙钛矿太阳能电池中的重组

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摘要

Thin film solar cells can work efficiently by successful interfacial charge separation/collection. The solution-processed perovskite (CH3NH3PbI3) film carries many trap states on the surface, which is detrimental to the high performance of solar cells. Therefore, it is of great urgency to control the interface in the device. In this study, polar silane molecules with amino end groups are self-assembled at the interface of the perovskite/hole transport materials, which works efficiently for the cells even without enough thermal annealing. It reforms the surface of the insufficiently annealed perovskite film, which leads to a normally performing solar cell without the S-shaped current density-voltage curve. For sufficiently annealed perovskite film, the small amount of PbI2 formed and a Si-O-Si network at the interface passivates the surface traps and acts as an energy barrier to reduce recombination in the perovskite solar cells. With the amino-ended silane modification, the optimized performance of the perovskite solar cell reaches 11.8%, which shows great advantages over the original device with a performance of 8.25% (0.92 Sun, AM1.5).
机译:薄膜太阳能电池可以通过成功的界面电荷分离/收集有效地工作。溶液加工后的钙钛矿(CH3NH3PBI3)膜在表面上携带许多捕集状态,这对太阳能电池的高性能有害。因此,控制设备中的界面具有很大的紧迫性。在该研究中,具有氨基端基的极性硅烷分子在钙钛矿/空穴传输材料的界面处自组装,即使在没有足够的热退火的情况下也有效地为细胞工作。它改变了不充分退火的钙钛矿膜的表面,这导致通常执行的太阳能电池,而没有S形电流浓度电压曲线。对于足够退火的钙钛矿膜,形成的少量PBI2和界面处的Si-O-Si网络钝化表面捕集器并用作能量屏障,以减少钙钛矿太阳能电池中的重组。随着氨基结束的硅烷改性,Perovskite太阳能电池的优化性能达到11.8%,其优于原始装置,性能为8.25%(0.92阳光,AM1.5)。

著录项

  • 来源
    《RSC Advances》 |2016年第11期|共6页
  • 作者单位

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Ningbo Collabrat Innovat Ctr Nonlinear Calam Syst Dept Microelect Sci &

    Engn Ningbo 315211 Zhejiang Peoples R China;

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

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