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Investigation of CVD graphene as-grown on Cu foil using simultaneous scanning tunneling/atomic force microscopy

机译:利用同时扫描隧穿/原子力显微镜研究在铜箔上生长的CVD石墨烯

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摘要

Scanning tunneling microscopy (STM) and atomic force microscopy (AFM) images of graphene reveal either a triangular or honeycomb pattern at the atomic scale depending on the imaging parameters. The triangular patterns at the atomic scale are particularly difficult to interpret, as the maxima in the images could be every other carbon atom in the six-fold hexagonal array or even a hollow site. Carbon sites exhibit an inequivalent electronic structure in HOPG or multilayer graphene due to the presence of a carbon atom or a hollow site underneath. In this work, we report small-amplitude, simultaneous STM/AFM imaging using a metallic (tungsten) tip, of the graphene surface as-grown by chemical vapor deposition (CVD) on Cu foils. Truly simultaneous operation is possible only with the use of small oscillation amplitudes. Under a typical STM imaging regime the force interaction is found to be repulsive. Force–distance spectroscopy revealed a maximum attractive force of about 7 nN between the tip and carbon/hollow sites. We obtained different contrast between force and STM topography images for atomic features. A honeycomb pattern showing all six carbon atoms is revealed in AFM images. In one contrast type, simultaneously acquired STM topography revealed hollow sites to be brighter. In another, a triangular array with maxima located in between the two carbon atoms was acquired in STM topography.
机译:石墨烯的扫描隧道显微镜(STM)和原子力显微镜(AFM)图像根据成像参数显示出原子级的三角形或蜂窝状图案。原子尺度上的三角形图案特别难以解释,因为图像中的最大值可能是六折六边形阵列中的每个其他碳原子,甚至是中空的位点。由于HOPG或多层石墨烯中碳原子的存在或下方的中空位点,碳位点显示出不等价的电子结构。在这项工作中,我们报告了使用金属(钨)尖端对铜箔上通过化学气相沉积(CVD)生长的石墨烯表面进行的小幅度,同时STM / AFM成像。只有使用较小的振荡幅度,才能真正实现同时运行。在典型的STM成像条件下,发现力相互作用是排斥的。力-距离谱显示尖端和碳/空心位点之间的最大吸引力约为7 nN。对于原子特征,我们在力图和STM形貌图之间获得了不同的对比度。在AFM图像中显示出显示所有六个碳原子的蜂窝图案。在一种对比类型中,同时获取的STM形貌显示空心部位更亮。在另一种情况下,在STM形貌中获得了最大值位于两个碳原子之间的三角形阵列。

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