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基于石墨烯材料的拉曼光谱及其在相关器件中的应用。

Raman spectroscopy of graphene-based materials and its applications in related devices.

机构信息

State Key Laboratory of Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China.

出版信息

Chem Soc Rev. 2018 Mar 5;47(5):1822-1873. doi: 10.1039/c6cs00915h.

Abstract

Graphene-based materials exhibit remarkable electronic, optical, and mechanical properties, which has resulted in both high scientific interest and huge potential for a variety of applications. Furthermore, the family of graphene-based materials is growing because of developments in preparation methods. Raman spectroscopy is a versatile tool to identify and characterize the chemical and physical properties of these materials, both at the laboratory and mass-production scale. This technique is so important that most of the papers published concerning these materials contain at least one Raman spectrum. Thus, here, we systematically review the developments in Raman spectroscopy of graphene-based materials from both fundamental research and practical (i.e., device applications) perspectives. We describe the essential Raman scattering processes of the entire first- and second-order modes in intrinsic graphene. Furthermore, the shear, layer-breathing, G and 2D modes of multilayer graphene with different stacking orders are discussed. Techniques to determine the number of graphene layers, to probe resonance Raman spectra of monolayer and multilayer graphenes and to obtain Raman images of graphene-based materials are also presented. The extensive capabilities of Raman spectroscopy for the investigation of the fundamental properties of graphene under external perturbations are described, which have also been extended to other graphene-based materials, such as graphene quantum dots, carbon dots, graphene oxide, nanoribbons, chemical vapor deposition-grown and SiC epitaxially grown graphene flakes, composites, and graphene-based van der Waals heterostructures. These fundamental properties have been used to probe the states, effects, and mechanisms of graphene materials present in the related heterostructures and devices. We hope that this review will be beneficial in all the aspects of graphene investigations, from basic research to material synthesis and device applications.

摘要

基于石墨烯的材料具有显著的电子、光学和机械性能,这引起了科学界的极大兴趣,并为各种应用带来了巨大的潜力。此外,由于制备方法的发展,基于石墨烯的材料家族正在不断扩大。拉曼光谱是一种通用的工具,可以在实验室和大规模生产的尺度上识别和表征这些材料的化学和物理性质。这项技术非常重要,以至于大多数关于这些材料的论文都至少包含一个拉曼光谱。因此,在这里,我们从基础研究和实际应用(即器件应用)的角度系统地综述了基于石墨烯的材料的拉曼光谱学的发展。我们描述了本征石墨烯中所有一阶和二阶模式的基本拉曼散射过程。此外,还讨论了不同堆叠顺序的多层石墨烯的剪切、层呼吸、G 和 2D 模式。还介绍了确定石墨烯层数、探测单层和多层石墨烯的共振拉曼光谱以及获得基于石墨烯的材料的拉曼图像的技术。描述了拉曼光谱在研究外部扰动下石墨烯基本性质方面的广泛能力,这些能力也已扩展到其他基于石墨烯的材料,如石墨烯量子点、碳点、氧化石墨烯、纳米带、化学气相沉积生长和 SiC 外延生长的石墨烯薄片、复合材料和基于石墨烯的范德华异质结构。这些基本特性已被用于探测相关异质结构和器件中石墨烯材料的状态、效应和机制。我们希望本综述将有益于从基础研究到材料合成和器件应用的各个方面的石墨烯研究。

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