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Aesthetically Pleasing Conjugated PolymenFullerene Blends for Blue-Green Solar Cells Via Roll-to-Roll Processing

机译:通过卷对卷工艺美观地使用共轭聚甲醛富勒烯混合物,用于蓝绿色太阳能电池

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The practical application of organic photovoltaic (OPV) cells requires high throughput printing techniques in order to attain cells with an area large enough to provide useful amounts of power. However, in the laboratory screening of new materials for OPVs, spin-coating is used almost exclusively as a thin-film deposition technique due its convenience. We report on the significant differences between the spin-coating of laboratory solar cells and slot-die coating of a blue-green colored, low bandgap polymer (PGREEN). This is one of the first demonstrations of slot-die-coated polymer solar cells OPVs not utilizing poly(3-hexylth-iophene):(6,6)-phenyl-C_(61)-butyric acid methyl ester (PCBM) blends as a light absorbing layer. Through synthetic optimization, we show that strict protocols are necessary to yield polymers which achieve consistent photovoltaic behavior. We fabricated spin-coated laboratory scale OPV devices with PGREEN: PCBM blends as active light absorbing layers, and compare performance to slot die-coated individual solar cells, and slot-die-coated solar modules consisting of many cells connected in series. We find that the optimum ratio of polymer to PCBM varies significantly when changing from spin-coating of thinner active layer films to slot-die coating, which requires somewhat thicker films. We also demonstrate the detrimental impacts on power conversion efficiency of high series resistance imparted by large electrodes, illustrating the need for higher conductivity contacts, transparent electrodes, and high mobility active layer materials for large-area solar cell modules.
机译:有机光伏(OPV)电池的实际应用需要高通量打印技术,以便获得面积足够大以提供有用电量的电池。但是,在实验室筛查OPV的新材料时,由于其方便性,旋涂几乎只用作薄膜沉积技术。我们报告了实验室太阳能电池的旋涂和蓝绿色的低带隙聚合物(PGREEN)的缝模涂布之间的显着差异。这是未使用聚(3-己基噻吩):( 6,6)-苯基-C_(61)-丁酸甲酯(PCBM)共混物的缝模涂布聚合物太阳能电池OPV的首批演示之一光吸收层。通过合成优化,我们证明了严格的规程对于获得能够实现稳定光伏行为的聚合物是必要的。我们制造了带有PGREEN:PCBM共混物作为有源光吸收层的旋涂实验室规模的OPV器件,并将其性能与狭缝模头涂覆的单个太阳能电池以及由许多串联连接的电池组成的狭缝模头涂覆的太阳能电池组件进行了比较。我们发现,当从较薄的活性层薄膜旋涂改为狭缝模头涂布(这需要稍厚的薄膜)时,聚合物与PCBM的最佳比例差异很大。我们还演示了大电极对高串联电阻的功率转换效率的不利影响,说明了大面积太阳能电池模块需要更高电导率的触点,透明电极和高迁移率有源层材料。

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