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Adsorption and manipulation of carbon onions on highly oriented pyrolytic graphite studied with atomic force microscopy

机译:原子力显微镜研究碳在高取向热解石墨上的吸附和操纵

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Carbon onions produced by DC arc discharge method were deposited on highly oriented pyrolytic graphite (HOPG) surface and their adsorption and manipulation was studied using an atomic force microscopy (AFM). Well-dispersed adsorption of carbon onions on HOPG surface was obtained and aggregations of onions were not observed. The van der Waals interaction between the onion and HOPG surface and that between two onions, were calculated and discussed using Hamaker's theory. The manipulation of adsorbed onions on HOPG surface was realized using the AFM in both the raster mode and the vector mode. The controllability and precision of two manipulation modes were compared and the vector mode manipulation was found superior, and is a useful technique for the construction of nano-scale devices based on carbon onions.
机译:将直流电弧放电法产生的碳洋葱沉积在高度定向的热解石墨(HOPG)表面上,并使用原子力显微镜(AFM)研究了它们的吸附和操纵。碳洋葱在HOPG表面上的吸附分散良好,未观察到洋葱的聚集。利用Hamaker理论计算并讨论了洋葱与HOPG表面之间以及两个洋葱之间的范德华相互作用。使用AFM在光栅模式和矢量模式下均可实现HOPG表面吸附洋葱的处理。比较了两种操作模式的可控制性和精度,发现矢量模式操作具有优越性,是构建基于碳洋葱的纳米级器件的有用技术。

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