Park Won-Hwa
Department of Chemistry, Hanyang University, Seoul 04763, Korea.
Nanomaterials (Basel). 2021 Oct 25;11(11):2839. doi: 10.3390/nano11112839.
To achieve high-quality chemical vapor deposition of monolayer graphene electrodes (CVD-MG), appropriate characterization at each fabrication step is essential. In this article, (1) Raman spectroscopy/microscopy are employed to unravel the contact effect between the CVD-MG and Cu foil in suspended/supported formation. (2) The Surface-Enhanced Raman spectroscopy (SERS) system is described, unveiling the presence of a z-directional radial breathing-like mode (RBLM) around 150 cm, which matches the Raman shift of the radial breathing mode (RBM) from single-walled carbon nanotubes (SWCNTs) around 150 cm. This result indicates the CVD-MG located between the Au NPs and Au film is not flat but comprises heterogeneous protrusions of some domains along the z-axis. Consequently, the degree of carrier mobility can be influenced, as the protruding domains result in lower carrier mobility due to flexural phonon-electron scattering. A strongly enhanced G-peak domain, ascribed to the presence of scrolled graphene nanoribbons (sGNRs), was observed, and there remains the possibility for the fabrication of sGNRs as sources of open bandgap devices. (3) Electrostatic force microscopy (EFM) is used for the measurement of surface charge distribution of graphene at the nanoscale and is crucial in substantiating the electrical performance of CVD-MG, which was influenced by the surface structure of the Cu foil. The ripple (RP) structures were determined using EFM correlated with Raman spectroscopy, exhibiting a higher tapping amplitude which was observed with structurally stable and hydrophobic RPs with a threading type than surrounding RPs. (4) To reduce the RP density and height, a plausible fabrication could be developed that controls the electrical properties of the CVD-MG by tuning the cooling rate.
为了实现高质量的单层石墨烯电极化学气相沉积(CVD - MG),在每个制造步骤进行适当的表征至关重要。在本文中,(1)采用拉曼光谱/显微镜来揭示CVD - MG与铜箔在悬浮/支撑结构中的接触效应。(2)描述了表面增强拉曼光谱(SERS)系统,揭示了在150 cm左右存在z方向的径向呼吸样模式(RBLM),这与单壁碳纳米管(SWCNTs)在150 cm左右的径向呼吸模式(RBM)的拉曼位移相匹配。该结果表明位于金纳米颗粒和金膜之间的CVD - MG并非平坦的,而是沿z轴包含一些区域的异质突起。因此,载流子迁移率会受到影响,因为这些突出区域由于弯曲声子 - 电子散射导致载流子迁移率降低。观察到一个归因于卷曲石墨烯纳米带(sGNRs)存在的强烈增强的G峰区域,并且仍然有可能制造sGNRs作为开放带隙器件的来源。(3)静电力显微镜(EFM)用于在纳米尺度上测量石墨烯的表面电荷分布,对于证实受铜箔表面结构影响的CVD - MG的电学性能至关重要。使用与拉曼光谱相关的EFM确定了波纹(RP)结构,显示出与具有穿线类型的结构稳定且疏水的RP相比,周围RP具有更高的敲击幅度。(4)为了降低RP密度和高度,可以开发一种合理的制造方法,通过调整冷却速率来控制CVD - MG的电学性能。