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Plasmonics of 2D Nanomaterials: Properties and Applications

机译:2D纳米材料的血浆:性能和应用

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Abstract Plasmonics has developed for decades in the field of condensed matter physics and optics. Based on the classical Maxwell theory, collective excitations exhibit profound light-matter interaction properties beyond classical physics in lots of material systems. With the development of nanofabrication and characterization technology, ultra-thin two-dimensional (2D) nanomaterials attract tremendous interest and show exceptional plasmonic properties. Here, we elaborate the advanced optical properties of 2D materials especially graphene and monolayer molybdenum disulfide (MoS 2 ), review the plasmonic properties of graphene, and discuss the coupling effect in hybrid 2D nanomaterials. Then, the plasmonic tuning methods of 2D nanomaterials are presented from theoretical models to experimental investigations. Furthermore, we reveal the potential applications in photocatalysis, photovoltaics and photodetections, based on the development of 2D nanomaterials, we make a prospect for the future theoretical physics and practical applications.
机译:抽象的血浆已经开发出几十年的凝聚物物理和光学领域。基于经典的麦克斯韦地区,集体激励在许多材料系统中表现出超越古典物理的深远的灯光相互作用。随着纳米制造和表征技术的发展,超薄二维(2D)纳米材料吸引了巨大的兴趣,并显示出特殊的等离子体性能。这里,我们详细说明了2D材料的先进光学性质,特别是石墨烯和单层钼二硫化物(MOS 2),回顾石墨烯的等离子体性能,并讨论杂交2D纳米材料中的偶联效果。然后,将2D纳米材料的等离子体调整方法从理论模型中提出给实验研究。此外,我们揭示了光催化,光伏和光检测中的潜在应用,基于2D纳米材料的发展,为未来理论物理和实际应用做出了前景。

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