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Continuous 1D-Metallic Microfibers Web for Flexible Organic Solar Cells

机译:连续一维金属微纤维网,用于柔性有机太阳能电池

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We report the use of a continuous 1D-metallic microfibers web (MFW) as transparent electrode for organic solar cells (OSCs). The MEW electrode can be produced with a process that involves simple electrospinning and wet etching of metal thin film. Au MFW exhibits a maximum optical transmittance of 90.8% (at 15 Omega/sq of the sheet resistance) and excellent mechanical flexibility. The MEW structure has an average width in the range from 4 to 6 mu m and a junction-free structure, resulting in very smooth surface roughness. The OSCs with Au MEW electrode exhibited a higher power conversion efficiency (PCE) of 3.50% than the device with an indium tin oxide electrode (PCE = 3.20%). The optical modeling calculation showed that the Au MFW electrode induced light scattering and improved the light absorption in the active layer, resulting in an improved PCE in the OSCs.
机译:我们报告了使用连续的一维金属微纤维网(MFW)作为有机太阳能电池(OSC)的透明电极。 MEW电极可以通过涉及简单的电纺丝和湿法蚀刻金属薄膜的工艺来生产。金MFW的最大光学透射率为90.8%(在15Ω的薄层电阻下)和极好的机械柔韧性。 MEW结构的平均宽度在4至6μm的范围内并且是无结结构的,从而导致非常光滑的表面粗糙度。具有Au MEW电极的OSC的功率转换效率(PCE)比具有铟锡氧化物电极的设备(PCE = 3.20%)更高,为3.50%。光学模型计算表明,Au MFW电极引起光散射并改善了有源层中的光吸收,从而改善了OSC中的PCE。

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