Duarte Francisco, Torres João Paulo N, Baptista António, Marques Lameirinhas Ricardo A
Department of Electrical and Computer Engineering, Instituto Superior Técnico, 1049-001 Lisbon, Portugal.
Instituto de Telecomunicações, 1049-001 Lisbon, Portugal.
Nanomaterials (Basel). 2021 Feb 7;11(2):422. doi: 10.3390/nano11020422.
In the last decade, the development and progress of nanotechnology has enabled a better understanding of the light-matter interaction at the nanoscale. Its unique capability to fabricate new structures at atomic scale has already produced novel materials and devices with great potential applications in a wide range of fields. In this context, nanotechnology allows the development of models, such as nanometric optical antennas, with dimensions smaller than the wavelength of the incident electromagnetic wave. In this article, the behavior of optical aperture nanoantennas, a metal sheet with apertures of dimensions smaller than the wavelength, combined with photovoltaic solar panels is studied. This technique emerged as a potential renewable energy solution, by increasing the efficiency of solar cells, while reducing their manufacturing and electricity production costs. The objective of this article is to perform a performance analysis, using COMSOL Multiphysics software, with different materials and designs of nanoantennas and choosing the most suitable one for use on a solar photovoltaic panel.
在过去十年中,纳米技术的发展与进步使人们能够更好地理解纳米尺度下的光与物质相互作用。其在原子尺度制造新结构的独特能力已经产生了具有巨大潜在应用价值的新型材料和器件,广泛应用于众多领域。在此背景下,纳米技术使得诸如纳米光学天线等尺寸小于入射电磁波波长的模型得以开发。在本文中,研究了光学孔径纳米天线(一种具有小于波长尺寸孔径的金属薄板)与光伏太阳能板相结合的行为。该技术通过提高太阳能电池的效率,同时降低其制造成本和发电成本,成为一种潜在的可再生能源解决方案。本文的目的是使用COMSOL Multiphysics软件,对不同材料和设计的纳米天线进行性能分析,并选择最适合用于太阳能光伏板的纳米天线。