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Novel ZnO nanowires/silicon hierarchical structures for superhydrophobic, low reflection, and high efficiency solar cells

机译:用于超疏水,低反射和高效太阳能电池的新型ZnO纳米线/硅层级结构

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For current solar cell technique, low conversion efficiency is the main limiting factor. A large portion of energy loss during solar cell operation could be attributed to optical loss, namely reflection loss of the incoming light. To reduce the reflection loss, surface texturing and antireflection coatings are most commonly used strategies. We report a novel hierarchical structure of integrating ZnO nanowire arrays on Si micropyramids as an effective anti-reflection layer for improving the energy conversion efficiency. This structure displays a broadband reflection suppression in the 300–1200 nm range, with an average weighted reflectance of 3.2%, much lower than the previously reported 6.6% reflectance of tapered ZnO nanostructures on planar surfaces. Sunrays 1.3 simulation was employed for optimizing and a better understanding of the effect of hierarchical structure in reflectance suppression. In addition, the surface modification enables a self cleaning property that will prevent the blocking of light by dust particles on solar panels.
机译:对于电流太阳能电池技术,低转换效率是主要限制因素。太阳能电池操作期间的大部分能量损失可能归因于光学损耗,即进入光的反射损耗。为了减少反射损耗,表面纹理和抗反射涂层是最常用的策略。我们报告了一种新的层次结构,将ZnO纳米线阵列与Si微嘧啶相积分作为一种有效的抗反射层,用于提高能量转换效率。该结构在300-1200nm范围内显示宽带反射抑制,平均加权反射率为3.2%,远低于先前报道的平面表面上的锥形ZnO纳米结构的6.6%反射率。 Sunrays 1.3用于优化和更好地了解层次结构在反射抑制中的影响。此外,表面改性使自动清洁性能能够通过太阳能电池板上的灰尘颗粒阻挡光。

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