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首页> 外文期刊>Photovoltaics, IEEE Journal of >Reflective Back Contacts for Ultrathin Cu(In,Ga)Se2-Based Solar Cells
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Reflective Back Contacts for Ultrathin Cu(In,Ga)Se2-Based Solar Cells

机译:用于超薄Cu(IN,GA)SE2的太阳能电池的反射背面触点

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We report on the development of highly reflective back contacts (RBCs) made of multilayer stacks for ultrathin CIGS solar cells. Two architectures are compared: they are made of a silver mirror coated either with a single layer of In2O3:Sn (ITO) or with a bilayer of ZnO:Al/ITO. Due to the improvement of CIGS rear reflectance, both back contacts result in a significant external quantum efficiency enhancement, in agreement with optical simulations. However, solar cells fabricated with Ag/ITO back contacts exhibit a strong shunting behavior. The key role of the ZnO:Al layer to control the morphology of the top ITO layer and to avoid silver diffusion through the back contact is highlighted. For a 500-nm-thick CIGS layer, this optimized RBC leads to a best cell with a short-circuit current of 27.8 mA/cm(2) (+2.2 mA/cm(2) as compared to a Mo back contact) and a 12.2%-efficiency (+2.5% absolute).
机译:我们报告了由多层叠层制成的高反射背面接触(RBC)的开发,用于超薄CIGS太阳能电池。比较两种架构:它们由涂有单层In2O3:Sn(ITO)或用ZnO:Al / ITO的双层的银镜制成。由于CIGS后反射率的改善,两者触点都会导致具有显着的外部量子效率增强,同时与光学模拟一致。然而,用AG / ITO背面触点制造的太阳能电池表现出强烈的分流行为。 ZnO:Al层控制顶部ITO层的形态的关键作用,避免了通过背触点的银色扩散。对于500nm厚的CIGS层,该优化的RBC导致具有27.8mA / cm(2)的短路电流的最佳电池(+2.2 mA / cm(2),与MO背接触相比)和12.2%的效率(绝对+ 2.5%)。

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