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Colorful semitransparent polymer solar cells employing a bottom periodic one-dimensional photonic crystal and a top conductive PEDOT:PSS layer

机译:使用底部周期性一维光子晶体和顶部导电PEDOT:PSS层的彩色半透明聚合物太阳能电池

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In this article we report on a semitransparent polymer solar cell (STPSC) with polymer: fullerene blends sandwiched between a bottom one-dimensional photonic crystal (1DPC) and a top solution-processed highly conductive PEDOT:PSS electrode for light harvesting. The photoelectric parameters of STPSCs are characterized by the measurements of double-face optical transmittance, reflectance, absorption, J-V, EQE, IQE, average visible transmittance, and CIE in conjunction with those of the theoretical calculations based on transfer matrix simulation. The results reveal that the theoretical short-circuit current density (J(SC)) of 1DPC-STPSC is not sensitive to the active layer thickness due to the relatively weaker microcavity effect compared to that of the conventional opaque PSCs, making the large-area manufacturing process easier. However, it shows a stronger microcavity effect compared to the non-microcavity STPSCs, which is advantageous to light absorption in active blends in the strong absorption band while maintaining visible light transmission in the weak absorption band. The power conversion efficiency of 5.20% and J(SC) of 12.25 mA cm(-2) increased by 37% and 38% respectively when compared with those of the STPSCs without using 1DPC, which is the highest value ever reported for an inverted STPSC with a low-cost highly conductive PEDOT: PSS layer as the light-incident side.
机译:在本文中,我们报告了一种半透明聚合物太阳能电池(STPSC),其聚合物:富勒烯混合物夹在底部一维光子晶体(1DPC)和顶部溶液处理的高导电性PEDOT:PSS电极之间,用于光收集。 STPSC的光电参数通过双面光学透射率,反射率,吸收率,J-V,EQE,IQE,平均可见透射率和CIE的测量以及基于传输矩阵模拟的理论计算来表征。结果表明,与传统的不透明PSC相比,1DPC-STPSC的理论短路电流密度(J(SC))对有源层厚度不敏感,因为其微腔效应相对较弱,因此面积较大制造过程更容易。但是,与非微腔STPSC相比,它显示出更强的微腔效应,这有利于在强吸收带中的活性混合物中吸收光,同时在弱吸收带中保持可见光透射。与不使用1DPC的STPSC相比,5.20%的功率转换效率和12.25 mA cm(-2)的J(SC)分别提高了37%和38%,这是有史以来最高的反向STPSC值低成本高导电性的PEDOT:PSS层作为光入射面。

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