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Efficient light-trapping with quasi-periodic uniaxial nanowrinkles for thin-film silicon solar cells

机译:用于薄膜硅太阳能电池的准周期性单轴纳米线的高效光捕

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摘要

Self-organizing nanopatterns can enable economically competitive, industrially applicable light-harvesting platforms for thin-film solar cells. In this work, we present transparent solar cell substrates having quasi-periodic uniaxial nanowrinkle patterns with high optical haze values. The self-organized nanowrinkle template is created by controlled heat-shrinking of metal-deposited pre-stretched polystyrene sheets. A scalable UV-nanoimprinting method is used to transfer the nanopatterns to glass substrates on which single-junction hydrogenated amorphous silicon p-i-n solar cells are subsequently fabricated. The structural and optical analyses of the solar cell show that the nanowrinkle pattern is replicated throughout the solar cell structure leading to enhanced absorption of light. The efficient broadband light-trapping in the nanowrinkle solar cells results in very high 18.2 mA/cm(2) short-circuit current density and 9.5% energy-conversion efficiency, which respectively are 35.8% and 39.7% higher than the values obtained in flat-substrate solar cells. The cost-and time-efficient technique introduces a promising new approach to customizable light-management strategies in thin-film solar cells.
机译:自组织纳米模式可以为薄膜太阳能电池进行经济上竞争,工业上适用的灯具平台。在这项工作中,我们呈现具有具有高光学雾度值的准周期性单轴纳米射线图案的透明太阳能电池基板。通过对金属沉积的预拉伸聚苯乙烯片的控制热收缩来产生自组织的纳米瘤模板。可伸缩的UV纳米压印方法用于将纳米图变为玻璃基板,随后制造单结氢化非晶硅P-I-N太阳能电池。太阳能电池的结构和光学分析表明,在整个太阳能电池结构中复制了纳米尺寸,导致光吸收光。纳米级太阳能电池的有效宽带光捕获导致非常高的18.2mA / cm(2)短路电流密度和9.5%的能量转换效率,分别比平面所获得的值高35.8%和39.7% -substrate太阳能电池。成本和较节奏的技术介绍了薄膜太阳能电池中可定制的光线管理策略的有希望的新方法。

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