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Antireflection TiOx Coating with Plasmonic Metal Nanoparticles for Silicon Solar Cells

机译:等离子体金属纳米粒子的TiOx减反射膜用于硅太阳能电池

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摘要

It is known that the light scattering from the metal particles deposited on the surfaces of cells can be used for increasing light trapping in the solar cells. In this work, plasmonic structures are composite materials that consisted of silver nanoparticles embedded in dielectric films of TiOx—used as cell antireflection coating. The films are deposited by sol–gel method using spin-on technique. Microstructure of prepared samples is analyzed by SEM observation. Good homogenity and particles density was obtained by this simple, cheap, and short time-demanding method. We demonstrate that due to light scattering by metal particles, the plasmonic-ARC layer is more effective than TiOx layer without Ag nanoparticles. Implementation of nanoparticles on bare cell surface was carried out too. The influence of the plasmonic structures on the silicon solar cells parameters is presented as well. We announce about 5 % additional growth in short circuit current for cells with nanoparticles.
机译:已知从沉积在电池表面上的金属颗粒散射的光可用于增加太阳能电池中的光捕获。在这项工作中,等离激元结构是由嵌入TiOx介电膜中的银纳米颗粒组成的复合材料,用作细胞抗反射涂层。使用旋涂技术通过溶胶-凝胶法沉积薄膜。通过SEM观察分析制备的样品的微观结构。通过这种简单,廉价和短时间要求的方法获得了良好的均匀性和颗粒密度。我们证明,由于金属颗粒的光散射,等离子弧层比不含银纳米颗粒的TiOx层更有效。纳米粒子也可以在裸露的细胞表面上实施。还介绍了等离子体结构对硅太阳能电池参数的影响。我们宣布具有纳米颗粒的电池的短路电流将增加约5%。

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