Department of Chemistry, Department of Physics & Astronomy and Centre for Advanced Materials and Biomaterials Research, University of Western Ontario, 1151 Richmond Street, London, Ontario N6A 5B7, Canada.
Phys Chem Chem Phys. 2015 Sep 7;17(33):21315-22. doi: 10.1039/c4cp05252h.
In this study, tip-enhanced Raman spectroscopy (TERS) is used to characterize graphene-like and graphitic platelets composed of a few layers of graphene. Specifically, gap-mode TERS geometry provides a larger enhancement of the local electromagnetic field at the junction formed by a gold sharp tip and a gold substrate. Graphene-like platelets are deposited onto ultra-flat thin gold nanoplates using a surfactant-assisted method. Au-coated atomic force microscopy (AFM) tips are used to probe specific substrate regions coated by the platelets. TERS spectra are collected on distinctive points on the graphene-like layers and surrounding substrate using radially or linearly polarized light, with an excitation wavelength of 632.8 nm. The position, width and intensity of G, D, and 2D Raman-active modes of graphene are discussed as a function of the incident light polarization and for distinct positions on the graphene layer. We report here on the nature of the collected TERS spectra focusing in particular on the edges of the graphene platelets.
在这项研究中,采用尖端增强拉曼光谱(TERS)来表征由几层石墨烯组成的类石墨烯和石墨片。具体而言,间隙模式 TERS 几何形状在由金锐尖和金基底形成的连接处提供了更大的局部电磁场增强。使用表面活性剂辅助方法将类石墨烯片沉积在超平整的薄金纳米板上。使用涂覆金的原子力显微镜(AFM)尖端来探测由片材涂覆的特定基底区域。使用径向或线偏振光,以 632.8nm 的激发波长,在类石墨烯层和周围基底的特征点上收集 TERS 光谱。讨论了作为入射光偏振和在石墨烯层上的不同位置函数的 G、D 和 2D 拉曼活性模式的位置、宽度和强度。我们在这里报告所收集的 TERS 光谱的性质,特别关注石墨烯片的边缘。