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Anchorable Perylene Diimides as Chemically Inert Electron Transport Layer for Efficient and Stable Perovskite Solar Cells with High Reproducibility

机译:可锚固的Perylene二酰亚胺作为化学惰性电子传输层,用于高再现性的高效稳定的钙钛矿太阳能电池

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摘要

Oxide semiconductors like TiO_2 and SnO_2 are exclusively used to construct electron transport layer (ETL) in n-i-p-structured perovskite solar cells (PSCs). Despite high electron mobility and suitable energy levels, their complicated surface chemistry is detrimental to the interfacial stability as well as fabrication reproducibility. Alternatively, organic n-type semiconductors address these issues due to their defined molecular structures. Herein, the novel use of anchorable perylene diimides (PDI) and naphthalene diimide (NDI) as chemically inert ETLs is proposed to improve the stability and reproducibility of n-i-p-structured PSCs. Compared with NDI, the PDI analogues show more suitable lowest unoccupied molecular orbital (LUMO) energy levels (-4.1 vs. -3.8 eV) for matching the conduction band edge of metal halide perovskites, thus favoring the interfacial electron collection. The anchoring chains decorated on PDI entity are found to affect not only the solution processability of ETLs, but also the crystal quality of perovskites. More importantly, the interfacial perovskite decomposition is suppressed in such organic ETLs-based PSCs. These merits of the anchorable PDI-based ETLs enable ≈19% efficiency devices with excellent reproducibility and long-term stability, which outperform traditional TiO_2-based n-i-p PSCs.
机译:像TiO_2和SnO_2这样的氧化物半导体专门用于构建N-I-P结构钙钛矿太阳能电池(PSC)中的电子传输层(ETL)。尽管电子迁移率和合适的能量水平,但它们的复杂表面化学对界面稳定性有害以及制造再现性。或者,有机N型半导体由于其定义的分子结构而解决了这些问题。这里,提出了作为化学惰性EtL的锚固翼二酰亚胺(PDI)和萘二酰亚胺(NDI)的新颖使用,以改善N-I-P结构PSC的稳定性和再现性。与NDI相比,PDI类似物显示出更合适的最低未占用的分子轨道(LUMO)能水平(LUMO)能水平(-4.1 vs. -3.8eV),用于匹配金属卤化物钙锌矿的传导边缘,从而有利于界面电子收集。发现在PDI实体上装饰的锚固链不仅影响ETL的溶液可加工性,还影响Perovskites的晶体质量。更重要的是,在基于有机ETL的PSC中抑制了界面钙钛矿分解。基于锚固PDI的ETL的这些优点使具有优异的再现性和长期稳定性的效率装置能够优异,这是基于传统的TiO_2的N-I-P PSC。

著录项

  • 来源
    《Solar RRL》 |2021年第3期|2000736.1-2000736.9|共9页
  • 作者单位

    Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering Shanghai Key Laboratory of Functional Materials Chemistry Frontiers Science Center for Materiobiology and Dynamic Chemistry Institute of Fine Chemicals School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China;

    Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering Shanghai Key Laboratory of Functional Materials Chemistry Frontiers Science Center for Materiobiology and Dynamic Chemistry Institute of Fine Chemicals School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China;

    Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering Shanghai Key Laboratory of Functional Materials Chemistry Frontiers Science Center for Materiobiology and Dynamic Chemistry Institute of Fine Chemicals School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China;

    Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering Shanghai Key Laboratory of Functional Materials Chemistry Frontiers Science Center for Materiobiology and Dynamic Chemistry Institute of Fine Chemicals School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China;

    Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering Shanghai Key Laboratory of Functional Materials Chemistry Frontiers Science Center for Materiobiology and Dynamic Chemistry Institute of Fine Chemicals School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China;

    Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering Shanghai Key Laboratory of Functional Materials Chemistry Frontiers Science Center for Materiobiology and Dynamic Chemistry Institute of Fine Chemicals School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China;

    Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering Shanghai Key Laboratory of Functional Materials Chemistry Frontiers Science Center for Materiobiology and Dynamic Chemistry Institute of Fine Chemicals School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China;

    Key Laboratory for Advanced Materials and Joint International Research Laboratory of Precision Chemistry and Molecular Engineering Shanghai Key Laboratory of Functional Materials Chemistry Frontiers Science Center for Materiobiology and Dynamic Chemistry Institute of Fine Chemicals School of Chemistry and Molecular Engineering East China University of Science and Technology Shanghai 200237 China;

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  • 正文语种 eng
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  • 关键词

    electron transport layers; interfacial stabilities; perovskite solar cells; perylene diimides; reproducibilities;

    机译:电子传输层;界面稳定;Perovskite太阳能电池;Per Bernene Diidides;再现;

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