Reliability and efficacy of organic passivation for polycrystalline silicon solar cells at room temperature

O. Shinde, A. Funde, S. Jadkar, R. Dusane, N. Dhere, S. Ghaisas
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引用次数: 1

Abstract

Oleylamine is used as a passivating layer instead of commercial high temperature SiNx. Oleylamine coating applied on the n-type emitter side with p-type base polycrystalline silicon solar cells at room temperature using a simple spin coating method. It has been observed that there is 16% increase in efficiency after Oleylamine coating. Further, the solar cell was subjected to standard characterization namely current-voltage measurement for electrical parameters and Fourier transform infrared spectroscopy to understand the interaction of emitter surface and passivating Oleylamine. However, the passivation layer is not stable due to the reaction between Oleylamine and ambient air content such as humidity and carbon dioxide. This degradation can be prevented with suitable overcoating.
室温下多晶硅太阳能电池有机钝化的可靠性和有效性
采用油胺作为钝化层,代替商业高温SiNx。采用简单的自旋镀膜方法,在室温下将油胺涂层应用于p型基底多晶硅太阳电池的n型发射极侧。经观察,经油胺涂层后,效率提高了16%。此外,对太阳能电池进行了标准表征,即电学参数的电流-电压测量和傅里叶变换红外光谱,以了解发射极表面与钝化油胺的相互作用。然而,由于油胺与周围空气含量(如湿度和二氧化碳)之间的反应,钝化层不稳定。这种降解可以通过适当的覆盖层来防止。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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