纳米结构砷化镓太阳能电池的设计、仿真及转换效率提升分析

Shiyao Tan, N. Das, A. Helwig, S. Islam
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引用次数: 0

摘要

本文讨论了纳米结构砷化镓太阳能电池的设计和分析,通过增加光的透射和吸收,减少光的反射来提高转换效率。本研究的重点是构建具有不同纳米光栅高度和节距的不同类型的纳米光栅形GaAs太阳能电池,对比仿真结果,寻找能够提供更高转换效率的合适纳米结构。利用时域有限差分仿真工具对抛物线形、三角形、梯形和矩形等不同形状纳米光栅的光反射、透射和吸收特性进行了仿真计算。仿真结果证实,抛物线形纳米光栅结构的光反射率高于三角形纳米光栅结构,但低于矩形和梯形纳米光栅结构。此外,仿真结果证实,在200 nm的光栅高度和810 nm的光栅间距下,抛物线形纳米光栅结构的透光率约为62.3%,比矩形(即平面)衬底高出约22%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano-structured GaAs Solar Cell Design, Simulation and Analysis for Conversion Efficiency Improvement
This paper discusses nano-structured GaAs solar cell design and analysis for conversion efficiency improvement by increasing the light transmission and absorption, reducing the light reflection. The focus of this research is to construct different type of nano-grating shaped GaAs solar cells with various nano-grating heights and pitches, to compare the simulation results and find a suitable nano-structure that can provide higher conversion efficiency. Finite difference time domain (FDTD) simulation tool is used to simulate and calculate the light reflection, transmission and absorption for different nano-grating shapes, such as, parabolic, triangular, trapezoidal and rectangular. Based on the simulation results, it has been confirmed that the light reflection of parabolic shaped nano-grating structures is higher than triangular nano-grating structures, but it is lower than rectangular and trapezoidal shaped nano-grating structures. Moreover, the simulation results confirmed that the light transmission of parabolic shaped nano-grating structures is about 62.3% having a 200-nm grating height and an 810-nm grating pitch, which is about 22% higher than the rectangular (i.e., flat) type substrates.
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