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Optical developments for silicon thin film solar cells in the substrate configuration

机译:基板配置中的硅薄膜太阳能电池的光学开发

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In the nip or substrate configuration thin film silicon solar cells, the choice of front TCO contact is critical because there is a trade off between its transparency which influences the current in the solar cell and its conductivity which influences the series resistance. Here, we investigate the optical behavior of two different TCO front contacts, either a 70 nm thick, nominally flat ITO or a 2 μm thick rough LPCVD ZnO. The back contact consists of LP-CVD ZnO with random texture. First we investigate the influence of the rough and flat front TCOs in μc-Si:H and a-Si:H solar cells. With the back contact geometries used in this work, the antireflection properties of ITO are effective at providing as much light trapping as the rough LP-CVD ZnO. In the second part, we demonstrate that total of 25 to 26 mA/cm~2 is achievable in nip micromorph tandem cells and show short circuit current up to 11.7 mA/cm~2 using an SIO based intermediate reflector.
机译:在压区或基板配置的薄膜硅太阳能电池中,选择正面TCO接触至关重要,因为在影响太阳能电池中电流的透明性和影响串联电阻的导电性之间要进行权衡。在这里,我们研究了两种不同的TCO前触点的光学行为,即70 nm厚,名义上平坦的ITO或2μm厚的粗糙LPCVD ZnO。背面触点由具有随机纹理的LP-CVD ZnO组成。首先,我们研究了μc-Si:H和a-Si:H太阳能电池中粗糙和平坦的正面TCO的影响。借助用于这项工作的背面接触几何形状,ITO的抗反射特性可有效提供与粗糙LP-CVD ZnO一样多的光捕获。在第二部分中,我们证明在压区微晶型串联电池中可达到25至26 mA / cm〜2的电流,并使用基于SIO的中间反射器显示高达11.7 mA / cm〜2的短路电流。

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