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Improving Efficiency of Multicrystalline Silicon and CIGS Solar Cells by Incorporating Metal Nanoparticles

机译:通过掺入金属纳米粒子提高多晶硅和CIGS太阳能电池的效率

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摘要

This work studies the use of gold (Au) and silver (Ag) nanoparticles in multicrystalline silicon (mc-Si) and copper-indium-gallium-diselenide (CIGS) solar cells. Au and Ag nanoparticles are deposited by spin-coating method, which is a simple and low cost process. The random distribution of nanoparticles by spin coating broadens the resonance wavelength of the transmittance. This broadening favors solar cell applications. Metal shadowing competes with light scattering in a manner that varies with nanoparticle concentration. Experimental results reveal that the mc-Si solar cells that incorporate Au nanoparticles outperform those with Ag nanoparticles. The incorporation of suitable concentration of Au and Ag nanoparticles into mc-Si solar cells increases their efficiency enhancement by 5.6% and 4.8%, respectively. Incorporating Au and Ag nanoparticles into CIGS solar cells improve their efficiency enhancement by 1.2% and 1.4%, respectively. The enhancement of the photocurrent in mc-Si solar cells is lower than that in CIGS solar cells, owing to their different light scattering behaviors and material absorption coefficients.
机译:这项工作研究了金(Au)和银(Ag)纳米粒子在多晶硅(mc-Si)和铜铟镓二硒化物(CIGS)太阳能电池中的用途。通过旋涂法沉积金和银纳米颗粒,这是一种简单且低成本的方法。通过旋涂形成的纳米粒子的随机分布扩大了透射率的共振波长。这种拓宽有利于太阳能电池的应用。金属遮蔽以随纳米粒子浓度变化的方式与光散射竞争。实验结果表明,掺有Au纳米颗粒的mc-Si太阳能电池优于含Ag纳米颗粒的mc-Si太阳能电池。将适当浓度的Au和Ag纳米粒子掺入mc-Si太阳能电池中,其效率分别提高了5.6%和4.8%。将Au和Ag纳米颗粒掺入CIGS太阳能电池中,其效率分别提高了1.2%和1.4%。由于mc-Si太阳能电池的光散射行为和材料吸收系数不同,因此其光电流的增强低于CIGS太阳能电池。

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