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Low bandgap polymers with low HOMO level for bulk heterojunction organic solar cells

机译:具有低HOMO含量的低带隙聚合物,用于块状异质结有机太阳能电池

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The recent development of conjugated polymers for bulk heterojunction organic solar cells was reviewed. Bulk heterojunction of donor and acceptor materials with phase separation at nanometer scale can dramatically increase the efficiency via the improvement on excitons' diffusion, separation, and the charge transport as well. Bandgap and HOMO level of the polymers as the donor are the main factors to determine the performance of organic solar cells with PCBM acceptor. To the bulk heterojunction solar cells based on polymer/PCBM blend, the perfect polymer should bear low bandgap and low HOMO level simultaneously, thereby collaboratively increase the short circuit current and the open circuit voltage. Various promising conjugated polymer materials with low bandgap and low HOMO level are summarized, and the synthesis methods of the polymers are also introduced.
机译:综述了用于本体异质结有机太阳能电池的共轭聚合物的最新进展。通过改善激子的扩散,分离和电荷传输,在纳米尺度上具有相分离的供体和受体材料的本体异质结可以显着提高效率。聚合物作为供体的带隙和HOMO能级是决定带有PCBM受体的有机太阳能电池性能的主要因素。对于基于聚合物/ PCBM共混物的块状异质结太阳能电池,理想的聚合物应同时具有低带隙和低HOMO能级,从而共同增加短路电流和开路电压。概述了低带隙和低HOMO能级的各种有前景的共轭聚合物材料,并介绍了这些聚合物的合成方法。

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