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Absorption enhancement in thin film a-Si solar cells with double-sided SiO2 particle layers

机译:具有双面SiO2颗粒层的薄膜a-Si太阳能电池的吸收增强

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摘要

Light absorption enhancement is very important for improving the power conversion efficiency of a thin film a-Si solar cell. In this paper, a thin-film a-Si solar cell model with double-sided SiO2 particle layers is designed, and then the underlying mechanism of absorption enhancement is investigated by finite difference time domain (FDTD) simulation;finally the feasible experimental scheme for preparing the SiO2 particle layer is discussed. It is found that the top and bottom SiO2 particle layers play an important role in anti-reflection and light trapping, respectively. The light absorption of the cell with double-sided SiO2 layers greatly increases in a wavelength range of 300 nm–800 nm, and the ultimate efficiency increases more than 22%compared with that of the flat device. The cell model with double-sided SiO2 particle layers reported here can be used in varieties of thin film solar cells to further improve their performances.
机译:光吸收的增强对于提高薄膜非晶硅太阳能电池的功率转换效率非常重要。本文设计了具有双面SiO2颗粒层的a-Si薄膜太阳能电池模型,然后通过时域有限差分法(FDTD)研究了吸收增强的基本机理;最后提出了可行的实验方案。讨论了制备SiO2颗粒层的方法。发现顶部和底部SiO 2颗粒层分别在抗反射和光捕获中起重要作用。具有双面SiO2层的电池的光吸收在300 nm–800 nm的波长范围内大大增加,与平面设备相比,其最终效率提高了22%以上。此处报道的具有双面SiO2颗粒层的电池模型可用于各种薄膜太阳能电池中,以进一步改善其性能。

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