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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Recent advances of non-fullerene organic electron transport materials in perovskite solar cells
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Recent advances of non-fullerene organic electron transport materials in perovskite solar cells

机译:钙钛矿太阳能电池中非富烯有机电子传输材料的最新进展

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In perovskite solar cells (PerSCs), the electron transport layer (ETL) extracts and transports electrons from the perovskite light absorption layer (PAL) to the cathode, which plays an important role in improving the performance and long-term stability of the devices. Compared with fullerene derivatives, non-fullerene n-type organic semiconductors have some unique advantages, such as molecular structure diversity, ease of modification, adjustable frontier molecular orbitals, and good stability. Recently, non-fullerene electron transport materials (ETMs) have attracted more and more attention as efficient ETLs in PerSCs. A variety of non-fullerene ETMs have been reported. Herein, we summarized the latest developments of non-fullerene organic ETMs in PerSCs, including small molecular organic ETMs and polymer ETMs. Especially, the common effects of substituents and design strategies of molecular configuration on the properties of non-fullerene ETMs were systematically summarized. At the same time, the remaining challenges and promising future trends of PerSCs based on non-fullerene organic ETMs are discussed.
机译:在Perovskite太阳能电池(PERSC)中,电子传输层(ETL)从钙钛矿光吸收层(PAL)中提取并将电子传送到阴极,这在提高器件的性能和长期稳定性方面起着重要作用。与富勒烯衍生物相比,非富烯N型有机半导体具有一些独特的优点,如分子结构多样性,易于改性,可调节的前沿分子轨道,以及良好的稳定性。最近,非富勒斯电子传输材料(ETM)吸引了越来越多的关注,以效率为有效的ETL。已经报道了各种非富烯ETM。在此,我们总结了Perscs中非富勒烯有机ETM的最新发育,包括小分子有机ETM和聚合物ETM。特别是,系统总结了分子配置对非富勒烯ETM性能的常见效果和分子配置的性能。与此同时,讨论了基于非富含富勒烯有机ETM的剩余挑战和未来的未来趋势。

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