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首页> 外文期刊>Journal of materials science >Perylene derivatives for solar cells and energy harvesting: a review of materials, challenges and advances
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Perylene derivatives for solar cells and energy harvesting: a review of materials, challenges and advances

机译:用于太阳能电池和能量收集的衍生物:材料,挑战和进展的综述

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Herein, we present a review about recent advances in perylene diimide derivatives applied to organic solar cells and energy harvesting. Several organic and inorganic compounds, most of which are solution processed or thermally evaporated, are used for this purpose. Features such as energy level in relation to the donor material's thermal and mechanical stability and processability are among the aspects that reflect the performance of these materials as electron acceptors or electrodes. Moreover, the donor/acceptor interface directly reflects the photovoltaic response. Therefore, device engineering efforts have been exerted to achieve proper acceptor distribution along the bulk of thin films or improve the compatibility at the donor/acceptor interface. This review is divided into subsections concerning the use of PDI molecules, PDI dimers/trimers/tetramers, bilayer devices, routes to improve the donor/acceptor interface, PDI-based polymers and energy harvesting. The reports show that PDI derivatives are suitable candidates for replacing fullerene derivatives in OSCs with reduced production cost and improved stability. Moreover, new PDI composites with graphene are promising cathodes for sodium batteries. Therefore, PDI derivatives are low cost and multifunctional materials employed to produce optoelectronic devices with numerous purposes.
机译:在本文中,我们提出了有关di二酰亚胺衍生物应用于有机太阳能电池和能量收集的最新进展的综述。为此目的,使用了几种有机和无机化合物,其中大多数是经过溶液处理或热蒸发的。诸如能级与供体材料的热,机械稳定性和可加工性有关的特征,反映了这些材料作为电子受体或电极的性能。此外,供体/受体界面直接反映了光伏响应。因此,已经进行了装置工程上的努力以实现沿整个薄膜的适当的受体分布或改善供体/受体界面处的相容性。这篇综述分为有关PDI分子的使用,PDI二聚体/三聚体/四聚体,双层装置,改善供体/受体界面的途径,基于PDI的聚合物和能量收集的小节。报告显示,PDI衍生物适合替代OSC中的富勒烯衍生物,具有降低的生产成本和更高的稳定性。此外,具有石墨烯的新型PDI复合材料有望成为钠电池的阴极。因此,PDI衍生物是低成本的多功能材料,用于生产具有多种用途的光电器件。

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