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Absorption enhancement in thin film a-Si solar cells with double-sided SiO_2 particle layers

陈乐王庆康沈向前陈文黄堃刘代明

2015中国物理B:英文版Engineering被引 1

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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.

引用本文(GB/T 7714)

陈乐, 王庆康, 沈向前, 等. Absorption enhancement in thin film a-Si solar cells with double-sided SiO_2 particle layers[J]. 中国物理B:英文版, 2015.

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