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首页> 外文期刊>Nanotechnology, IEEE Transactions on >Periodic Nanopillar N-I-P Amorphous Si Photovoltaic Cells Using Carbon Nanotube Scaffolds
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Periodic Nanopillar N-I-P Amorphous Si Photovoltaic Cells Using Carbon Nanotube Scaffolds

机译:使用碳纳米管支架的周期性纳米柱状N-I-P非晶硅光伏电池

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摘要

Arrays of periodic one-dimensional nanomaterials offer tunable optical properties in terms of light–matter interaction which are attractive for designing efficient optoelectronic devices. This paper presents a fabrication of bottom-up grown nanopillar (NP) array solar cells based on n-i-p thin-film amorphous silicon using scaffolds of vertically aligned carbon nanotube (CNT) array. The effects of varying the CNT spacing over the range from 800 to 2000 nm on optical and electrical properties of the solar cells were investigated. The NP solar cell with CNT spacing of 800 nm exhibited ‘moth-eye’ broadband antireflection behavior, showing an average reflectance value lower than 10%. The enhanced optical absorption translated to significant enhancements in photocurrent and quantum efficiency compared to a conventional planar solar cell under low light condition. The open-circuit voltage (Voc) of the NP solar cell was found systematically correlated with the CNT spacing and the illumination condition. The results presented here is of importance for developing high efficiency one-dimensional nanostructured solar cells.
机译:周期性的一维纳米材料阵列可在光-物质相互作用方面提供可调的光学特性,这对于设计高效的光电器件很有吸引力。本文介绍了一种使用垂直排列的碳纳米管(CNT)阵列的支架,基于n-i-p薄膜非晶硅自底向上生长的纳米柱(NP)阵列太阳能电池的制造方法。研究了在800-2000 nm范围内改变CNT间距对太阳能电池的光学和电学性质的影响。碳纳米管间距为800 nm的NP太阳能电池表现出“蛾眼”宽带抗反射性能,其平均反射率值低于10%。与传统的平面太阳能电池在弱光条件下相比,增强的光吸收转化为光电流和量子效率的显着提高。发现NP太阳能电池的开路电压( V oc )与CNT间距和照明条件系统地相关。本文给出的结果对于开发高效的一维纳米结构太阳能电池具有重要意义。

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