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Enhanced absorption in silicon nanocone arrays for photovoltaics

机译:用于光伏的硅纳米锥阵列中增强的吸收

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Silicon nanowire arrays have been shown to demonstrate light trapping properties and promising potential for next-generation photovoltaics. In this paper, we performed systematic and detailed simulation studies on the optical properties of silicon nanocone arrays as compared to nanowires arrays. Nanocone arrays were found to have significantly improved solar absorption and efficiencies over nanowire arrays. Detailed simulations revealed that nanocones have superior absorption due to reduced reflection from their smaller tip and reduced transmission from their larger base. The enhanced efficiencies of silicon nanocone arrays were found to be insensitive to tip diameter, which should facilitate their fabrication. Breaking the vertical mirror symmetry of nanowires results in a broader absorption spectrum such that overall efficiencies are enhanced. We also evaluated the electric field intensity, carrier generation and angle-dependent optical properties of nanocones and nanowires to offer further physical insight into their light trapping properties.
机译:硅纳米线阵列已显示出具有光捕获性能,并有望用于下一代光伏技术。在本文中,我们对硅纳米锥阵列与纳米线阵列的光学特性进行了系统且详细的模拟研究。发现纳米锥阵列与纳米线阵列相比具有显着改善的太阳能吸收和效率。详细的模拟显示,由于其较小尖端的反射减少以及其较大碱的透射减少,纳米锥具有出色的吸收性。发现硅纳米锥阵列的效率提高对尖端直径不敏感,这将有助于其制造。打破纳米线的垂直镜面对称性导致更宽的吸收光谱,从而提高了整体效率。我们还评估了纳米锥和纳米线的电场强度,载流子产生和与角度相关的光学特性,以进一步了解其光捕获特性。

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