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Effects of Hole-Collecting Buffer Layers and Electrodes on the Performance of Flexible Plastic Organic Photovoltaics

机译:空穴收集缓冲层和电极对柔性塑料有机光伏性能的影响

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Here we report the influences of the sheet resistance (Rsheet) of a hole-collecting electrode (indium tin oxide, ITO) and the conductivity of a hole-collecting buffer layer (poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate), PEDOT:PSS) on the device performance of flexible plastic organic photovoltaic (OPV) devices. The series resistance (RS) of OPV devices steeply increases with increasingRsheetof the ITO electrode, which leads to a significant decrease of short-circuit current density (JSC) and fill factor (FF) and power conversion efficiency, while the open-circuit voltage (VOC) was almost constant. By applying high-conductivity PEDOT:PSS, the efficiency of OPV devices with highRsheetvalues of 160 Ω/□ and 510 Ω/□ is greatly improved, by a factor of 3.5 and 6.5, respectively. These results indicate that the conductivities of ITO and PEDOT:PSS will become more important to consider for manufacturing large-area flexible plastic OPV modules.
机译:在这里,我们报告了集电电极(铟锡氧化物,ITO)的薄层电阻(Rsheet)和集电缓冲层(聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐), PEDOT:PSS)关于柔性塑料有机光伏(OPV)器件的器件性能。 OPV器件的串联电阻(RS)随着ITO电极的Rsheet的增加而急剧增加,这导致短路电流密度(JSC)和填充系数(FF)和功率转换效率显着降低,而开路电压( VOC)几乎恒定。通过应用高电导率的PEDOT:PSS,具有160sheetΩ/□和510Ω/□的高Rsheetvalue的OPV器件的效率分别提高了3.5倍和6.5倍。这些结果表明,ITO和PEDOT:PSS的电导率对于制造大面积柔性塑料OPV模块而言将变得更加重要。

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