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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Enhanced plasmonic light absorption on silicon solar cells: The case of silver (Ag) grid-indium tin oxide (ITO) composite front electrode
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Enhanced plasmonic light absorption on silicon solar cells: The case of silver (Ag) grid-indium tin oxide (ITO) composite front electrode

机译:硅太阳能电池上增强等离子体光吸收:银(Ag)网格 - 氧化铟锡(ITO)复合前电极的情况

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摘要

A novel silver (Ag) crossing grid-ITO composite front electrode with plasmonic light absorption enhancement has been designed to resolve the problem of inadequate light absorption in ultrathin film crystal silicon (c-Si) solar cells (SCs). In this novel structure, the ultrathin ITO layer primarily collects charge and the Ag crossing grids work as a charge transportation path and an optical absorption enhancer. The defined absorption enhancement factor G and structural parameters, such as ITO film thickness and linewidth, height and period of the Ag grid, were systematically optimized using finite-difference time-domain (FDTD) stimulations, and absorption enhancements were analyzed. A 61% light absorption enhancement was observed for the c-Si solar cell with an Ag crossing grid in the composite front electrode compared to that without the Ag crossing grid. Four types of resonance modes such as Fabry-Perot (FP) modes, waveguide modes, localized surface plasmon resonances (LSPR) and surface plasmon polaritons (SPPs) are supported by the designed structure. FP modes may be excited in bare c-Si SCs, but the inclusion of the 2D Ag crossing grid introduces waveguide modes sandwiched by Ag grids and the Ag back electrode, and SPPs and LSPR modes that lead to enhanced light absorption. (C) 2018 Elsevier B.V. All rights reserved.
机译:具有等离子体光吸收增强的新型银(AG)交叉电网ITO复合前电极旨在解决超薄薄膜晶体硅(C-Si)太阳能电池(SCS)中光吸收不足的问题。在这种新颖结构中,超薄ITO层主要收集电荷,并且AG交叉电网作为电荷输送路径和光学吸收增强剂。所定义的吸收增强因子G和结构参数,如Ag栅极的ITO膜的厚度和线宽,高度和周期,使用有限差分时域(FDTD)刺激进行了系统的优化,和吸收增强了分析。对于C-Si太阳能电池,在复合前电极中具有Ag交叉栅格的C-Si太阳能电池,与没有Ag交叉电网的情况相比,观察到61%的光吸收增强。由设计的结构支撑了设计结构的四种类型的共振模式,如法布里 - 珀罗(FP)模式,波导模式,局部表面等离子体谐振(LSPR)和表面等离子体极化子(SPP)。 FP模式可以在裸C-SiSCS中激发,但是包含2D AG交叉电网引入了由Ag栅格和AG背电极夹着的波导模式,以及导致增强光吸收的SPP和LSPR模式。 (c)2018年elestvier b.v.保留所有权利。

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