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Hybrid nanostructures of metal/two-dimensional nanomaterials for plasmon-enhanced applications

机译:用于等离子体增强应用的金属/二维纳米材料的杂化纳米结构

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摘要

Hybrid nanostructures composed of graphene or other two-dimensional (2D) nanomaterials and plasmonic metal components have been extensively studied. The unusual properties of 2D materials are associated with their atomically thin thickness and 2D morphology, and many impressive structures enable the metal nanomaterials to establish various interesting hybrid nanostructures with outstanding plasmonic properties. In addition, the hybrid nanostructures display unique optical characteristics that are derived from the close conjunction of plasmonic optical effects and the unique physicochemical properties of 2D materials. More importantly, the hybrid nanostructures show several plasmonic electrical effects including an improved photogeneration rate, efficient carrier transfer, and a plasmon-induced "hot carrier", playing a significant role in enhancing device performance. They have been widely studied for plasmon-enhanced optical signals, photocatalysis, photodetectors (PDs), and solar cells. In this review, the developments in the field of metal/2D hybrid nanostructures are comprehensively described. Preparation of hybrid nanostructures is first presented according to the 2D material type, as well as the metal nanomaterial morphology. The plasmonic properties and the enabled applications of the hybrid nanostructures are then described. Lastly, possible future research in this promising field is discussed.
机译:由石墨烯或其他二维(2D)纳米材料和等离激元金属成分组成的杂化纳米结构已得到广泛研究。 2D材料的非凡特性与其原子厚度薄和2D形态有关,许多令人印象深刻的结构使金属纳米材料能够建立具有出色的等离激元特性的各种有趣的杂化纳米结构。此外,杂化纳米结构显示出独特的光学特性,这些特性源自等离激元光学效应和2D材料的独特理化特性。更重要的是,杂化纳米结构显示出几种等离子体电效应,包括提高的光生速率,有效的载流子转移和等离子体激元诱导的“热载流子”,在增强器件性能方面起着重要作用。它们已被广泛研究用于等离激元增强的光信号,光催化,光电探测器(PDs)和太阳能电池。在这篇综述中,全面描述了金属/ 2D杂化纳米结构领域的发展。首先根据2D材料类型以及金属纳米材料的形态介绍了杂化纳米结构的制备。然后描述了杂化纳米结构的等离激元性质和应用。最后,讨论了这个有前途的领域中可能的未来研究。

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