Estimation of Number of Graphene Layers Using Different Methods: A Focused Review

石墨烯 材料科学 拉曼光谱 氧化石墨烯纸 石墨烯纳米带 纳米技术 石墨 单层 石墨烯泡沫 透射电子显微镜 纳米片 扫描电子显微镜 复合材料 光学 物理
作者
Vineet Kumar,Anuj Kumar,Dong-Joo Lee,Sang‐Shin Park
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:14 (16): 4590-4590 被引量:142
标识
DOI:10.3390/ma14164590
摘要

Graphene, a two-dimensional nanosheet, is composed of carbon species (sp2 hybridized carbon atoms) and is the center of attention for researchers due to its extraordinary physicochemical (e.g., optical transparency, electrical, thermal conductivity, and mechanical) properties. Graphene can be synthesized using top-down or bottom-up approaches and is used in the electronics and medical (e.g., drug delivery, tissue engineering, biosensors) fields as well as in photovoltaic systems. However, the mass production of graphene and the means of transferring monolayer graphene for commercial purposes are still under investigation. When graphene layers are stacked as flakes, they have substantial impacts on the properties of graphene-based materials, and the layering of graphene obtained using different approaches varies. The determination of number of graphene layers is very important since the properties exhibited by monolayer graphene decrease as the number of graphene layer per flake increases to 5 as few-layer graphene, 10 as multilayer graphene, and more than 10 layers, when it behaves like bulk graphite. Thus, this review summarizes graphene developments and production. In addition, the efficacies of determining the number of graphene layers using various characterization methods (e.g., transmission electron microscopy (TEM), atomic force microscopy (AFM), scanning electron microscopy (SEM), X-ray diffraction (XRD), Raman spectra and mapping, and spin hall effect-based methods) are compared. Among these methods, TEM and Raman spectra were found to be most promising to determine number of graphene layers and their stacking order.
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