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Crosslinked Semiconductor Polymers for Photovoltaic Applications

机译:光伏应用的交联半导体聚合物

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摘要

Organic solar cells (OSCs) have achieved much attention and meanwhile reach efficiencies above 10%. One problem yet to be solved is the lack of long term stability. Crosslinking is presented as a tool to increase the stability of OSCs. A number of materials used for the crosslinking of bulk heterojunction cells are presented. These include the crosslinking of low bandgap polymers used as donors in bulk heterojunction cells, as well as the crosslinking of fullerene acceptors and crosslinking between donor and acceptor. External crosslinkers often based on multifunctional azides are also discussed. In the second part, some work either leading to OSCs with high efficiencies or giving insight into the chemistry and physics of crosslinking are highlighted. The diffusion of low molar mass fullerenes in a crosslinked matrix of a conjugated polymer and the influence of crosslinking on the carrier mobility is discussed. Finally, the use of crosslinking to make stable interlayers and the solution processing of multilayer OSCs are discussed in addition to presentation of a novel approach to stabilize nanoimprinted patterns for OSCs by crosslinking.
机译:有机太阳能电池(OSC)已引起广泛关注,同时效率达到10%以上。尚未解决的一个问题是缺乏长期稳定性。交联被视为增加OSC稳定性的工具。提出了许多用于本体异质结电池交联的材料。这些包括在本体异质结电池中用作施主的低带隙聚合物的交联,以及富勒烯受体的交联以及施主与受体之间的交联。还讨论了通常基于多功能叠氮化物的外部交联剂。在第二部分中,重点介绍了导致OSC高效化或深入了解交联化学和物理的一些工作。讨论了低摩尔质量的富勒烯在共轭聚合物交联基质中的扩散以及交联对载流子迁移率的影响。最后,除了介绍通过交联稳定OSC的纳米压印图案的新颖方法外,还讨论了使用交联来形成稳定的中间层和多层OSC的溶液处理。

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