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Imaging nanoclusters in the constant height mode of the dynamic SFM

机译:在动态SFM的恒定高度模式下成像纳米团簇

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For the first time, high quality images of metal nanoclusters which were recorded in the constant height mode of a dynamic scanning force microscope (dynamic SFM) are shown. Surfaces of highly ordered pyrolytic graphite (HOPG) were used as a test substrate since metal nanoclusters with well defined and symmetric shapes can be created by epitaxial growth. We performed imaging of gold clusters with sizes between 5 and 15 nm in both scanning modes, constant DELTA f mode and constant height mode, and compared the image contrast. We notice that clusters in constant height images appear much sharper, and exhibit more reasonable lateral shapes and sizes in comparison to images recorded in the constant DEATA f mode. With the help of numerical simulations we show that only a microscopically small part of the tip apex (nanotip) is probably the main contributor for the image contrast formation. In principle, the constant height mode can be used for imaging surfaces of any material, e.g. ionic crystals, as shown for the system Au/NaCl(001).
机译:首次显示了在动态扫描力显微镜(动态SFM)的恒定高度模式下记录的金属纳米簇的高质量图像。高阶热解石墨(HOPG)的表面被用作测试基板,因为可以通过外延生长产生具有定义明确和对称形状的金属纳米团簇。我们在两种扫描模式(恒定DELTA f模式和恒定高度模式)下对大小在5至15 nm之间的金簇进行成像,并比较了图像对比度。我们注意到,与以恒定DEATA f模式记录的图像相比,恒定高度图像中的聚类显得更清晰,并且展现出更合理的横向形状和尺寸。借助数值模拟,我们显示出尖端顶点的一小部分(nanotip)可能是图像对比度形成的主要贡献者。原则上,恒定高度模式可用于成像任何材料的表面,例如离子晶体,如系统Au / NaCl(001)所示。

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