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Plasmonic light trapping in thin-film silicon solar cells with improved self-assembled silver nanoparticles

机译:具有改进的自组装银纳米颗粒的薄膜硅太阳能电池中的等离子捕获

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摘要

Plasmonic metal nanoparticles are of great interest for light trapping in thin-film silicon solar cells. In this Letter, we demonstrate experimentally that a back reflector with plasmonic Ag nanoparticles can provide light-trapping performance comparable to state-of-the-art random textures in n-i-p amorphous silicon solar cells. This conclusion is based on the comparison to high performance n-i-p solar cell and state-of-the-art efficiency p-i-n solar cells deposited on the Asahi VU-type glass. With the plasmonic back reflector a gain of 2 mA/cm ~2 in short-circuit current density was obtained without any deterioration of open circuit voltage or fill factor compared to the solar cell on a flat back reflector. The excellent light trapping is a result of strong light scattering and low parasitic absorption of self-assembled Ag nanoparticles embedded in the back reflector. The plasmonic back reflector provides a high degree of light trapping with a haze in reflection greater than 80% throughout the wavelength range 520-1100 nm. The high performance of plasmonic back reflector is attributed to improvements in the self-assembly technique, which result in a lower surface coverage and fewer small and irregular nanoparticles.
机译:等离子体金属纳米颗粒对于薄膜硅太阳能电池中的光捕获非常感兴趣。在这封信中,我们通过实验证明了具有等离激元Ag纳米粒子的背反射器可以提供与n-i-p非晶硅太阳能电池中最新的随机纹理相当的捕光性能。该结论基于与沉积在旭VU型玻璃上的高性能n-i-p太阳能电池和最新效率的p-i-n太阳能电池的比较。与平坦后反射器上的太阳能电池相比,使用等离子后反射器获得的短路电流密度增益为2 mA / cm〜2,而开路电压或填充因数没有任何下降。出色的光捕获是强光散射和嵌入后反射器中的自组装Ag纳米粒子的低寄生吸收的结果。等离子背面反射器可提供高度的光捕获,并且在整个波长范围(520-1100 nm)内反射雾度大于80%。等离激元背反射器的高性能归因于自组装技术的改进,这导致较低的表面覆盖率和较少的小且不规则的纳米颗粒。

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