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Development of micromorph tandem solar cells on flexible low-cost plastic substrates

机译:在柔性低成本塑料基板上开发微晶型串联太阳能电池

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摘要

We report on the development of fully flexible microcrystalline and micromorph tandem solar cells directly on low-cost substrates like poly-ethylen-terephtalate (PET) and poly-ethylen-naphtalate (PEN). The cells are deposited in nip or nipip configuration on the plastic substrate coated with a highly reflecting A-ZnO back contact. Light trapping is achieved by combining a periodically textured substrate and a diffusing ZnO front contact. Single-junction microcrystalline cells with a stable efficiency of 8.7% are achieved with an i-layer thickness of 1.2 mu m. In tandem devices we obtain an efficiency of 10.9% (initial) with an open circuit voltage of 1.35 V and a fill factor (FF) of 71.5%. These cells are slightly top limited with 11.26 and 11.46 mA/cm(2) in the amorphous (270 nm thick) and the microcrystalline (1.2 mu m thick) sub-cells, respectively. We introduce an intermediate reflector (IR) between the bottom and the top cell because it allows increasing the top cell current without compromising the stability by a thicker absorber. The IRs consist of either an ex-situ ZnO or a low refractive index P-doped silicon-oxygen compound deposited in-situ with a plasma process that is fully compatible with solar cell processing. We demonstrate significant current improvement (up to 8% relative) using both kinds of IRs.
机译:我们报告了直接在低成本衬底(如聚对苯二甲酸乙二酯(PET)和聚萘二甲酸乙二酯(PEN))上开发完全柔性的微晶和微晶双体太阳能电池的情况。电池以压区或压区/压区配置沉积在涂有高反射A-ZnO背接触的塑料基材上。通过结合周期性纹理化的基材和扩散的ZnO前触点来实现光捕获。 i层厚度为1.2μm,可实现稳定效率为8.7%的单结微晶电池。在串联设备中,我们以1.35 V的开路电压和71.5%的填充系数(FF)获得10.9%(初始)的效率。这些电池分别在非晶(270 nm厚)和微晶(1.2μm厚)子电池中分别受到11.26和11.46 mA / cm(2)的轻微限制。我们在底部电池和顶部电池之间引入了中间反射器(IR),因为它可以增加顶部电池的电流,而不会因较厚的吸收器而损害稳定性。 IR包括通过等离子体工艺原位沉积的异位ZnO或低折射率P掺杂的硅氧化合物,该工艺与太阳能电池工艺完全兼容。我们展示了使用两种IR都可以显着改善电流(相对最高可达8%)。

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