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Nanopillar photovoltaics: Materials, processes, and devices (Review)

机译:纳米柱状光伏:材料,工艺和装置(综述)

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摘要

Nanopillar photovoltaics present significant potential for fabrication of high-efficiency, low-cost solar cells. The advantages over planar cells, including wider materials choice, device geometries, and enhanced optical and electronic properties have been studied in detail over the past decade. Specifically, the 3-D geometry enables optimization of carrier collection and reduction of the material quality constraints. Furthermore, the anti-reflective and light trapping properties enable a drastic reduction in material necessary to absorb the majority of the incident light. Together, the optical and electronic advantages allow solar cell fabrication on low-cost substrates. However, the choice of the material system is important for taking advantage of the unique properties of nanopillar cells, especially given large surface/interface area. This review focuses on the recent work on the optical and electronic properties of nanopillar photovoltaics and the fabrication processes utilizing low-cost substrates.
机译:纳米柱状光伏材料具有制造高效,低成本太阳能电池的巨大潜力。在过去的十年中,已经详细研究了与平面电池相比的优势,包括更广泛的材料选择,器件几何形状以及增强的光学和电子特性。具体而言,3-D几何形状可优化载流子收集并降低材料质量限制。此外,抗反射和光捕获特性可以大大减少吸收大部分入射光所需的材料。光学和电子的优势共同使太阳能电池可以在低成本基板上制造。但是,材料系统的选择对于利用纳米柱状电池的独特性能非常重要,尤其是在给定较大的表面积/界面面积的情况下。这篇综述集中在有关纳米柱状光伏材料的光学和电子特性以及利用低成本基板的制造工艺方面的最新研究。

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