首页> 外文会议>2010 OSA-IEEE-COS Advances in Optoelectronics and Micro/Nano-Optics >Semitransparent low-bandgap polymer solar cells with high transmisision in green-wavelength range
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Semitransparent low-bandgap polymer solar cells with high transmisision in green-wavelength range

机译:在绿色波长范围内具有高透射率的半透明低带隙聚合物太阳能电池

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Optical modeling based on transfer matrix method (TMM) is employed to investigate the performance of the semitransparent low-bandgap polymer solar cells (PSCs), which are constructed by sandwiching the polymer active layer between an indium tin oxide (ITO) electrode and a thin Ag electrode. It is revealed that the efficiency of the device is more than 2.5% with high transmission across the visible spectrum. In addition, by capping a 40nm-thick MoO3 layer on the thin Ag electrode, the transmission at the green-wavelength range (500–570nm) can be increased to over 70%. Furthermore, comparison between the devices with low-bandgap polymer and high-bandgap polymer demonstrates semitransparent PSCs with transmission window at the red and green part of the spectrum can be achieved by selecting suitable active layer material.
机译:采用基于传递矩阵法(TMM)的光学模型研究半透明低带隙聚合物太阳能电池(PSC)的性能,该太阳能电池是通过将聚合物活性层夹在氧化铟锡(ITO)电极和薄电极之间而构成的银电极。结果表明,该器件的效率超过2.5%,并且在可见光谱范围内具有高透射率。此外,通过在薄的Ag电极上覆盖40nm厚的MoO3层,可以将绿波长范围(500–570nm)的透射率提高到70%以上。此外,具有低带隙聚合物的器件与高带隙聚合物的器件之间的比较表明,通过选择合适的有源层材料,可以实现在光谱的红色和绿色部分具有透射窗的半透明PSC。

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