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Thermal Stability-Enhanced and High-Efficiency Planar Perovskite Solar Cells with Interface Passivation

机译:具有接口钝化的热稳定增强和高效平面Perovskite太阳能电池

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摘要

As electron transport layer (ETL) of perovskite solar cells, oxide semiconductor Zinc oxide (ZnO) has been attracted great attention due to its relatively high mobility, optical transparency, low temperature fabrication and good environment stability. However, the nature of ZnO will react with the patron on methylamine, which would deteriorate the performances of cells. Although many methods including high temperature annealing, doping and surface modification have been studied to improve the efficiency and stability of perovskite solar cells with ZnO ETL, devices remains relatively low efficiency and stability. Herein, we adopted a novel multi-step annealing method to deposit a porous PbI2 film and improved the quality and uniformity of perovskite films. The cells with ZnO ETL were fabricated at the temperature of <150 degrees C by solution processing. The power conversion efficiency (PCE) of the device fabricated by the novel annealing method increased from 15.5% to 17.5%. In order to enhance the thermal stability of CH3NH3PbI3 (MAPbI(3)) on the ZnO surface, a thin layer of small molecule [6,6]-phenyl-C-61-butyric acid methyl ester (PCBM) was inserted between the ZnO layer and perovskite film. Interestingly, the PCE of PCBM-passivated cells could reach nearly 19.1%. To our best knowledge, this is the highest PCE value of ZnO-based perovskite solar cells until now. More importantly, PCBM modification could effectively suppress the decomposition of MAPbI(3) and improve the thermal stability of cells. Therefore, the ZnO is a promising candidate of electron transport material for perovskite solar cells in the future applications.
机译:作为钙钛矿太阳能电池的电子传输层(ETL),由于其相对高的迁移率,光学透明度,低温制造和良好的环境稳定性,氧化物半导体氧化锌(ZnO)被引起了极大的关注。然而,ZnO的性质将与甲胺上的顾客反应,这会恶化细胞的性能。虽然已经研究了许多方法,但已经研究了包括高温退火,掺杂和表面改性的方法,以提高具有ZnO EtL的Perovskite太阳能电池的效率和稳定性,但是装置仍然相对较低,效率较低。在此,我们采用了一种新型的多步骤退火方法来沉积多孔PBI2薄膜并提高钙钛矿薄膜的质量和均匀性。通过溶液加工在<150℃的温度下制造具有ZnO EtL的细胞。由新型退火方法制造的装置的功率转换效率(PCE)从15.5%增加到17.5%。为了提高CH3NH3PBI3的热稳定性(MAPBI(3))在ZnO表面上,在ZnO之间插入薄的小分子[6,6] -phenyl-C-61-丁酸甲酯(PCBM)层和钙钛矿薄膜。有趣的是,PCBM钝化细胞的PCE可能达到近19.1%。为了我们的最佳知识,这是Zno的Perovskite太阳能电池的最高PCE值,直到现在。更重要的是,PCBM修改可以有效地抑制MAPBI(3)的分解并提高细胞的热稳定性。因此,ZnO是未来应用中的钙钛矿太阳能电池的电子传输材料的有希望的电子传输材料的候选者。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2017年第44期|共10页
  • 作者单位

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Polymer Mat Minist Educ Sch Mat Sci Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Fac Phys &

    Elect Sci Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Polymer Mat Minist Educ Sch Mat Sci Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Polymer Mat Minist Educ Sch Mat Sci Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Polymer Mat Minist Educ Sch Mat Sci Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Polymer Mat Minist Educ Sch Mat Sci Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Fac Phys &

    Elect Sci Wuhan 430062 Hubei Peoples R China;

    City Univ Hong Kong Sch Energy &

    Environm Tat Chee Ave Kowloon Hong Kong Peoples R China;

    Hubei Univ Hubei Collaborat Innovat Ctr Adv Organ Chem Mat Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Polymer Mat Minist Educ Sch Mat Sci Wuhan 430062 Hubei Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    perovskite solar cells; crystallinity; zinc oxide; electron transport material; interface passivation;

    机译:钙钛矿太阳能电池;结晶性;氧化锌;电子传输材料;界面钝化;
  • 入库时间 2022-08-20 16:32:50

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