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Co-Evaporated Formamidinium Lead Iodide Based Perovskites with 1000 h Constant Stability for Fully Textured Monolithic Perovskite/Silicon Tandem Solar Cells

机译:共蒸发的甲脒铅基碘化物基于1000小时恒定稳定性的全纹理整体钙钛矿/硅串联太阳能电池

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摘要

Formamidinium iodide (FAI) based perovskite absorbers have been shown to be ideal candidates for highly efficient and operationally stable perovskite solar cells (PSC). A major challenge for formamidinium lead iodide (FAPbI(3)) is to suppress the phase transition from the photoactive black phase into yellow nonperovskite delta-phase. Several approaches to stabilize the black phase have been developed for solution-based perovskites, whereas so far, vacuum-deposited FAPbI(3) has rarely been reported. This study demonstrates the preparation of FAPbI(3) by co-evaporation and discusses the influence of the subjacent hole transporting layer (HTL) on its phase stability. By using FAI excess in the evaporation process in combination with phosphonic acids groups from the HTL, the black perovskite phase is stabilized at room temperature. Further addition of 32-59% methylammonium iodide (MAI) during the co-evaporation process leads to good absorption properties and high PSC efficiencies of 20.4%. In addition, excellent stability is achieved for optimized MAI to FAI ratios, maintaining 100% of the initial PSC performance after 1000 h under constant operation. This highly stable perovskite composition enables the first monolithic fully textured perovskite/silicon tandem solar cells with co-evaporated perovskite absorbers. Due to the conformally covered pyramid texture, these tandem cells show minimal reflection losses and reach an efficiency of 24.6%.
机译:甲脒碘化物(FAI)基于钙钛矿吸收剂已被证明是高效和操作稳定的钙钛矿太阳能电池(PSC)的理想候选者。甲脒铅碘化物的主要挑战(FAPBI(3))是抑制从光活性黑相的相转变为黄色非纲要醇δ相。稳定黑阶段的几种方法已经开发了基于溶液的钙钛矿,而到目前为止,很少报道真空沉积的FAPBI(3)。本研究通过共蒸发说明了FAPBI(3)的制备,并讨论了子附近的空穴传输层(HTL)对其相位稳定性的影响。通过使用来自HTL的膦酸基团的蒸发过程中的Fai过量,黑色钙钛矿相在室温下稳定。在共蒸发过程中进一步加入32-59%的甲基碘化物(MAI),导致良好的吸收性能和高PSC效率为20.4%。此外,对优化的MAI进行了优异的稳定性,以优化的MAI对FAI比率,在恒定操作下维持1000小时后的100%初始PSC性能。这种高度稳定的钙钛矿组合物使第一整体纹理培养的Perovskite /硅串联太阳能电池具有共蒸发的钙钛矿吸收器。由于覆盖的金字塔质地,这些串联细胞显示出最小的反射损耗并达到24.6%的效率。

著录项

  • 来源
    《Advanced energy materials》 |2021年第35期|2101460.1-2101460.14|共14页
  • 作者单位

    Helmholtz Zentrum Berlin Young Investigator Grp Perovskite Tandem Solar Ce Kekulestr 5 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Perovskite Tandem Solar Ce Kekulestr 5 D-12489 Berlin Germany;

    Humboldt Univ Brook Taylor Str 2 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Perovskite Tandem Solar Ce Kekulestr 5 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Act Mat & Interfaces Stabl Kekulestr 5 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Perovskite Tandem Solar Ce Kekulestr 5 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Perovskite Tandem Solar Ce Kekulestr 5 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Perovskite Tandem Solar Ce Kekulestr 5 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Perovskite Tandem Solar Ce Kekulestr 5 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Act Mat & Interfaces Stabl Kekulestr 5 D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Mat & Energie GmbH PVcomB D-12489 Berlin Germany|Beuth Univ Appl Sci Berlin D-13353 Berlin Germany;

    Tech Univ Berlin Fac Elect Engn & Comp Sci Marchstr 23 D-10587 Berlin Germany|Helmholtz Zentrum Berlin Mat & Energie GmbH Sci Management D-12489 Berlin Germany;

    Helmholtz Zentrum Berlin Young Investigator Grp Perovskite Tandem Solar Ce Kekulestr 5 D-12489 Berlin Germany|Tech Univ Berlin Fac Elect Engn & Comp Sci Marchstr 23 D-10587 Berlin Germany;

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

    co-evaporation; constant stability; FAPbI(3); fully textured; tandem solar cells;

    机译:共蒸发;恒定稳定性;FAPBI(3);完全纹理;串联太阳能电池;

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