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MULTI-LAYER WS2 AND MOS2 BASED PLASMONIC SOLAR CELL FOR SMART ENERGY HARVESTING

机译:基于多层WS2和MOS2的智能能量收集等离子体太阳能电池

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One of the best challenges regarding the futuristic vision of smart-city technologies is to offer a comfortable self-governance energy, especially when it comes to electricity storage. If one wants to revolutionize a pre-existing way of living, it is inescapable to neglect basic ingredients gathered from basic physics. The topic of Metamaterials represents a key field that might be explored and thus exploited to propose unprecedented ideas for completely no-existing properties and functionalities. Unlike other ambitious techniques, with a simple stratified surface in combination with a suitable choice of materials, it is possible to propose new solar cells operating in a broad range of frequencies. In this paper, we demonstrate a manner to achieve strong coupling interaction between metallic gold nanowires with a WS2 and MoS2 multi-layer. The novelty of this work lies in the drastic stability of the effect of the thickness layer variation on both, absorption performances and the electric field distribution within the visible and near-infrared range. Accordingly, this new design may be considered of prime importance in several areas such as sensing and solar cell efficiency, to cite a few examples.
机译:关于智能城市技术未来愿景的最佳挑战之一是提供舒适的自治能源,特别是当谈到电力储存时。如果想要彻底改变预先存在的生活方式,忽视从基本物理学收集的基本成分是不可避免的。超材料的主题代表了一个可能探索的关键字段,从而剥削了为完全没有现有的属性和功能提出前所未有的想法。与其他雄心勃勃的技术不同,用简单的分层表面与合适的材料选择相结合,可以提出在广泛的频率下运行的新太阳能电池。在本文中,我们证明了一种用WS2和MOS2多​​层实现金属金纳米线之间的强耦合相互作用的方式。这项工作的新颖性在于厚度层变化对可见和近红外范围内的吸收性能和电场分布的厚度层变化的巨大稳定性。因此,这种新设计可能被认为是在传感和太阳能电池效率的几个领域中的主要重要性,以引用几个例子。

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