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TCOs for Nip Thin Film Silicon Solar Cells

机译:Nip薄膜硅太阳能电池的TCO

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摘要

Substrate configuration allows for the deposition of thin film silicon (Si) solar cells on non-transparent substrates such as plastic sheets or metallic foils. In this work, we develop processes compatible with low T_g plastics. The amorphous Si (a-Si:H) and microcrystalline Si (mu c-Si:H) films are deposited by plasma enhanced chemical vapour deposition, at very high excitation frequencies (VHF-PECVD). We investigate the optical behaviour of single and triple junction devices prepared with different back and front contacts. The back contact consists either of a 2D periodic grid with moderate slope, or of low pressure CVD (LP-CVD) ZnO with random pyramids of various sizes. The front contacts are either a 70 nm thick, nominally flat ITO or a rough 2 fun thick LP-CVD ZnO. We observe that, for a-Si:H, the cell performance depends critically on the combination of thin flat or thick rough front TCOs and the back contact. Indeed, for a-Si:H, a thick LP-CVD ZnO front contact provides more light trapping on the 2D periodic substrate. Then, we investigate the influence of the thick and thin TCOs in conjunction with thick absorbers (mu c-Si:H). Because of the different nature of the optical systems (thick against thin absorber layer), the antireflection effect of ITO becomes more effective and the structure with the flat TCO provides as much light trapping as the rough LP-CVD ZnO. Finally, the conformality of the layers is investigated and guidelines are given to understand the effectiveness of the light trapping in devices deposited on periodic gratings.
机译:基板配置允许在不透明的基板(例如塑料片或金属箔)上沉积薄膜硅(Si)太阳能电池。在这项工作中,我们开发了与低T_g塑料兼容的工艺。非晶硅(a-Si:H)和微晶硅(μc-Si:H)膜通过等离子体增强化学气相沉积法以非常高的激发频率(VHF-PECVD)沉积。我们研究了具有不同背面和正面触点的单结和三结器件的光学性能。背面触点由具有适度斜率的2D周期性栅格或具有各种尺寸的随机金字塔的低压CVD(LP-CVD)ZnO组成。前触点是70 nm厚的名义上平坦的ITO或粗糙的2 fun厚的LP-CVD ZnO。我们观察到,对于a-Si:H,电池的性能关键取决于薄的扁平TCO或厚的粗糙TCO以及背面触点的组合。实际上,对于a-Si:H,厚的LP-CVD ZnO前触点在2D周期性基板上提供了更多的光捕获。然后,我们研究了厚和薄TCO与厚吸收剂(mu c-Si:H)的影响。由于光学系统的不同性质(厚于薄的吸收层),ITO的抗反射效果变得更加有效,具有平坦TCO的结构提供的光捕获与粗糙LP-CVD ZnO一样多。最后,研究了层的保形性,并给出了指导以了解在定期光栅上沉积的器件中光陷阱的有效性。

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