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The application of a magnetic field to improve polymer: Fullerence solar cell performance

机译:磁场改善聚合物的应用:富勒太阳能电池性能

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Charge transport in a percolated network resulted from the mixing of donor (polymer) and acceptor materials is one of the important issues in improving the performance of polymer solar cells. We demonstrate a simple approach to enhance the performance of polymer solar cells based on poly(3-hexythiophene) (P3HT):fullerene blend incorporating a small amount of magnetic FePt-nanowires (FePt-NWs) as an additive. The photoactive film was prepared under the application of a magnetic field perpendicular to the substrate during solvent drying process. The power conversion efficiency has been improved up to ∼ 60% for the treated cells. The improved device performance can be attributed to the overall improvement of polymer crystallinity.
机译:供体(聚合物)和受体材料混合导致的渗滤网络中的电荷传输是提高聚合物太阳能电池性能的重要问题之一。我们演示了一种简单的方法来增强基于聚(3-己噻吩)(P3HT):富勒烯共混物的聚合物太阳能电池的性能,掺入少量磁性FePt-纳米线(FePt-NWs)作为添加剂。在溶剂干燥过程中,在垂直于基材的磁场的作用下制备光敏膜。对于处理过的电池,功率转换效率已提高到约60%。器件性能的提高可归因于聚合物结晶度的整体提高。

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