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Flexible n-i-p thin film silicon solar cells on polyimide foils with textured ZnO:Ga back reflector

机译:具有纹理化ZnO:Ga背反射器的聚酰亚胺箔上的柔性n-i-p薄膜硅太阳能电池

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摘要

In thin film silicon solar cells on opaque substrates in n-i-p deposition sequence where the textured transparent conductive oxide (TCO) layer serves as a back reflector, one can independently optimize the morphology of the TCO layer without compromise on transparency and conductivity of this layer and further adjust the electro-optical properties of the back contact by using additional layers on top of the textured TCO. In the present work, we use this strategy to obtain textured back reflectors for solar cells in n-i-p deposition sequence on non-transparent flexible plastic foils. Gallium doped ZnO (ZnO:Ga) films were deposited on polyimide substrates by DC magnetron sputtering at a temperature of 200 °C. A wet-chemical etching step was performed by dipping the ZnO:Ga covered foil into a diluted HCl solution. The textured ZnO:Ga is then coated with a highly reflective Ag/ZnO double layer. On this back reflector, we develop thin film silicon solar cells with a microcrystalline silicon absorber layer. The current density for the cell with the textured ZnO:Ga layer is ~ 23 mA/cm2, 4 mA/cm2 higher than the one without such layer, and a maximum efficiency of 7.5% is obtained for a 1 cm2 cell.
机译:在以压印沉积顺序在不透明基板上的薄膜硅太阳能电池中,纹理化的透明导电氧化物(TCO)层用作背面反射层,可以独立地优化TCO层的形貌,而不会影响该层的透明度和导电性,进而通过在带纹理的TCO顶部使用其他层来调整背面触点的电光特性。在目前的工作中,我们使用这种策略在非透明柔性塑料箔上以n-i-p沉积顺序获得太阳能电池的纹理化背反射器。镓掺杂的ZnO(ZnO:Ga)膜通过DC磁控溅射在200°C的温度下沉积在聚酰亚胺基板上。湿法化学蚀刻步骤是通过将ZnO:Ga覆盖的箔浸入HCl稀溶液中进行的。然后在织构好的ZnO:Ga上涂覆一层高反射率的Ag / ZnO双层。在此背面反射器上,我们开发了具有微晶硅吸收层的薄膜硅太阳能电池。具有带纹理的ZnO:Ga层的电池的电流密度为〜23 mA / cm2,比没有这种层的电池的电流密度高4 mA / cm2,对于1 cm2的电池,其最大效率为7.5%。

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