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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Light absorption enhancement for ultra-thin Cu(In1-xGax)Se-2 solar cells using closely packed 2-D SiO2 nanosphere arrays
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Light absorption enhancement for ultra-thin Cu(In1-xGax)Se-2 solar cells using closely packed 2-D SiO2 nanosphere arrays

机译:使用紧密堆积的二维SiO2纳米球阵列增强Cu(In1-xGax)Se-2超薄太阳能电池的光吸收

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摘要

2-D closely packed SiO2 nanosphere arrays serving as the photonic structure for light absorption enhancement on top of ultra-thin Cu(In1-xGax)Se-2 solar cells are investigated both theoretically and experimentally. It is theoretically demonstrated that whispering gallery modes and high order Mie resonances contribute to the light absorption enhancement for the large spheres and an anti-reflection effect is prominent for small ones. The ultra-thin ClGSe solar cells achieve the optimum absorption enhancement for the small sphere array with a diameter of 110 nm, contrary to the larger spheres used in Si solar cells. The reason is attributed to the strong parasitic absorption in the AZO/ZnO/CdS front layers. They absorb mainly in the short wavelength range where the Mie resonances occur. Additionally, it is shown that the 110-nm-diameter sphere array exhibits a better angular tolerance than a conventional planar anti-reflection layer, which shows the potential as a promising anti-reflection structure. (C) 2016 Elsevier B.V. All rights reserved.
机译:从理论上和实验上研究了二维紧密堆积的SiO2纳米球阵列作为光子结构以增强超薄Cu(In1-xGax)Se-2太阳能电池顶部的光吸收。从理论上证明,耳语回廊模式和高阶Mie共振有助于大球体的光吸收增强,而对于小球体则具有显着的减反射效果。与硅太阳能电池中使用的较大球体相反,超薄ClGSe太阳能电池可实现直径110 nm的小球阵列的最佳吸收增强。原因归因于AZO / ZnO / CdS前层中的强寄生吸收。它们主要在发生米氏共振的短波长范围内吸收。另外,显示出直径为110nm的球阵列比常规的平面抗反射层表现出更好的角度公差,这显示了作为有希望的抗反射结构的潜力。 (C)2016 Elsevier B.V.保留所有权利。

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