Theoretical analysis of improved efficiency of silicon-wafer solar cells with textured nanotriangular grating structure

材料科学 太阳能电池 能量转换效率 光电子学 太阳能电池效率 薄脆饼 等离子太阳电池 光学 吸收(声学) 晶体硅 载流子寿命 光伏系统 聚合物太阳能电池 太阳能电池理论 复合材料 物理 生态学 生物
作者
Yaoju Zhang,Jun Zheng,Xuesong Zhao,Xiukai Ruan,Guihua Cui,Haiyong Zhu,Yuxing Dai
出处
期刊:Optics Communications [Elsevier BV]
卷期号:410: 369-375 被引量:7
标识
DOI:10.1016/j.optcom.2017.10.048
摘要

A practical model of crystalline silicon-wafer solar cells is proposed in order to enhance the light absorption and improve the conversion efficiency of silicon solar cells. In the model, the front surface of the silicon photovoltaic film is designed to be a textured-triangular-grating (TTG) structure, and the ITO contact film and the antireflection coating (ARC) of glass are coated on the TTG surface of silicon solar cells. The optical absorption spectrum of solar cells are simulated by applying the finite difference time domain method. Electrical parameters of the solar cells are calculated using two models with and without carrier loss. The effect of structure parameters on the performance of the TTG cell is discussed in detail. It is found that the thickness (t g) of the ARC, period (p) of grating, and base angle (θ) of triangle have a crucial influence on the conversion efficiency. The optimal structure of the TTG cell is designed. The TTG solar cell can produce higher efficiency in a wide range of solar incident angle and the average efficiency of the optimal TTG cell over 7:30–16:30 time of day is 8% higher than that of the optimal plane solar cell. In addition, the study shows that the bulk recombination of carriers has an influence on the conversion efficiency of the cell, the conversion efficiency of the actual solar cell with carrier recombination is reduced by 20.0% of the ideal cell without carrier recombination.
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