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Flexible polymer solar cells with power conversion efficiency of 8.7%

机译:柔性聚合物太阳能电池,功率转换效率为8.7%

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摘要

Here we demonstrate flexible polymer solar cells with a record high power conversion efficiency of 8.7% and a very high specific power of 400 W kg~(-1), by depositing a physical blend of a conjugated semiconducting polymer and a fullerene derivative on a highly flexible polyethylene terephthalate (PET) substrate. The flexible device reported here performs basically as well as those based on rigid glass/ ITO substrates with regard to most of the device parameters, however has a relatively lower fill factor, which can be further improved via interface engineering between the photoactive layer and electrodes or by the development of novel flexible substrates. The processing method for the flexible polymer solar cells is solution-based and all of the film deposition processes are completed at room temperature, thus this simplicity of preparing flexible polymer solar cells can offer easy-processability over a large area with fast deposition on an industrial scale at room temperature.
机译:在这里,我们通过将共轭半导体聚合物和富勒烯衍生物的物理共混物沉积在高能级聚合物上,演示了柔性聚合物太阳能电池,其具有创纪录的高功率转换效率8.7%和非常高的比功率400 W kg〜(-1)。柔性聚对苯二甲酸乙二醇酯(PET)基材。就大多数设备参数而言,此处报告的柔性设备的性能基本上与基于硬质玻璃/ ITO基板的柔性设备相同,但是其填充因子相对较低,可通过光敏层与电极或电极之间的界面工程来进一步提高填充因子通过开发新型柔性基板。柔性聚合物太阳能电池的加工方法是基于溶液的,并且所有的膜沉积工艺都在室温下完成,因此这种制备柔性聚合物太阳能电池的简便性可以在大面积上提供易于加工的特性,并在工业上实现快速沉积在室温下缩放。

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