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Bulk Heterojunction Solar Cells Based on Blends of Conjugated Polymers with II–VI and IV–VI Inorganic Semiconductor Quantum Dots

机译:基于共轭聚合物与II–VI和IV–VI无机半导体量子点共混物的体相异质结太阳能电池

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摘要

Bulk heterojunction solar cells based on blends of quantum dots and conjugated polymers are a promising configuration for obtaining high-efficiency, cheaply fabricated solution-processed photovoltaic devices. Such devices are of significant interest as they have the potential to leverage the advantages of both types of materials, such as the high mobility, band gap tunability and possibility of multiple exciton generation in quantum dots together with the high mechanical flexibility and large molar extinction coefficient of conjugated polymers. Despite these advantages, the power conversion efficiency (PCE) of these hybrid devices has remained relatively low at around 6%, well behind that of all-organic or all-inorganic solar cells. This is attributed to major challenges that still need to be overcome before conjugated polymer–quantum dot blends can be considered viable for commercial application, such as controlling the film morphology and interfacial structure to ensure efficient charge transfer and charge transport. In this work, we present our findings with respect to the recent development of bulk heterojunctions made from conjugated polymer–quantum dot blends, list the ongoing strategies being attempted to improve performance, and highlight the key areas of research that need to be pursued to further develop this technology.
机译:基于量子点和共轭聚合物共混物的体异质结太阳能电池是一种有前途的配置,可用于获得高效,廉价制造的溶液处理光伏器件。这类器件具有极大的兴趣,因为它们具有利用两种材料的优势的潜力,例如高迁移率,带隙可调谐性以及在量子点中产生多个激子的可能性以及高机械柔韧性和大摩尔消光系数共轭聚合物。尽管具有这些优点,但是这些混合设备的功率转换效率(PCE)仍然相对较低,约为6%,远低于全有机或全无机太阳能电池。这归因于在将共轭聚合物-量子点共混物视为商业应用可行之前仍需要克服的主要挑战,例如控制膜的形态和界面结构以确保有效的电荷转移和电荷转移。在这项工作中,我们介绍了有关由共轭聚合物-量子点共混物制成的本体异质结的最新进展的发现,列出了试图改善性能的现行策略,并强调了需要进一步研究的关键领域开发这项技术。

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