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A study of intrinsic amorphous silicon thin film deposited on flexible polymer substrates by magnetron sputtering

机译:磁控溅射沉积在柔性聚合物衬底上的本征非晶硅薄膜的研究

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摘要

Amorphous silicon (a-Si) has gained its popularity in thin film Solar cell fabrication for its high absorption coefficient, high applicability on flexible substrates and practical feasibility for low-cost roll-to-roll mass fabrication. Working as the intrinsic layer, the optical-electrical characteristics of amorphous silicon film is crucial to the cell performance. In this work, the amorphous silicon film has been fabricated on PET substrate by magnetron sputtering method. The main optical-electrical characteristics have been systematically investigated under different fabrication conditions (sputtering power, working pressure, working temperature). The results indicate that the deposition rate increases remarkably from 1.88 to 834 nm/min with the sputtering power increasing from 60 W to 120 W, while the light transmission rate decreases from 86% to 46% in the visible spectrum range (390 nm to 780 nm). Theoretical calculations have been carried out, showing a decreasing deposition rate under an increasing working pressure. A rising temperature provides a higher deposition rate and lower trans-mittance in the certain range. The optimized processing parameters in the fabrication of amorphous silicon thin film are obtained for high photoelectric property on flexible substrates. (C) 2016 Elsevier B.V. All rights reserved.
机译:非晶硅(a-Si)因其高吸收系数,在柔性基板上的高适用性以及低成本的卷对卷批量制造的实际可行性而在薄膜太阳能电池制造中广受欢迎。作为本征层,非晶硅膜的光电特性对电池性能至关重要。在这项工作中,已经通过磁控溅射法在PET基板上制造了非晶硅膜。已经在不同的制造条件(溅射功率,工作压力,工作温度)下系统地研究了主要的光电特性。结果表明,随着溅射功率从60 W增加至120 W,沉积速率从1.88 nm / min显着增加,而在可见光谱范围(390 nm至780)下,透光率从86%降低至46%。 nm)。已经进行了理论计算,显示出在增加的工作压力下沉积速率降低。在一定范围内,温度升高将提供较高的沉积速率和较低的透射率。为了在柔性基板上具有高光电性能,获得了非晶硅薄膜制造中的优化工艺参数。 (C)2016 Elsevier B.V.保留所有权利。

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