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Optical absorption enhancement in a Si nanohole structure with hexagonal unit cell for solar cell application

机译:具有六角形晶胞的硅纳米孔结构中的光吸收增强,用于太阳能电池应用

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摘要

Periodic hexagonal unit cell silicon nanohole (SiNH) structures with different structural dimensions have been fabricated using polystyrene spheres and investigated in terms of their microstructures and optical reflectance. Compared with a planar Si wafer, such structures exhibit much lower reflectance due to the enhanced scattering introduced by the SiNHs. Optical simulation using the finite element method has also been carried out in order to optimize the structural periodicity and hole diameter for maximum light absorption. The optimum structure is found to have a periodicity of 693 nm and hole diameter of 560 nm, and it yields the highest ultimate efficiency of 28.8%.
机译:已使用聚苯乙烯球体制作了具有不同结构尺寸的周期性六边形晶胞硅纳米孔(SiNH)结构,并对其微观结构和光反射率进行了研究。与平面Si晶片相比,由于SiNHs引入的散射增强,这种结构的反射率要低得多。为了优化结构周期性和孔径以获得最大的光吸收率,还使用有限元方法进行了光学模拟。发现最佳结构的周期性为693 nm,孔径为560 nm,最终效率最高,为28.8%。

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