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Scanning Tunneling Microscopy Images of Alkane Derivatives on Graphite: Role of Electronic Effects

机译:扫描烷烃衍生物在石墨上的隧道显微镜图像:电子效应的作用

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摘要

Scanning tunneling microscopy (STM) images of self-assembled monolayers of close-packed alkane chains on highly oriented pyrolitic graphite often display an alternating bright and dark spot pattern. Classical simulations suggest that a tilt of the alkane backbone is unstable and, therefore, unlikely to account for the contrast variation. First principles calculations based on density functional theory show that an electronic effect can explain the observed alternation. Furthermore, the asymmetric spot pattern associated with the minimum energy alignment is modulated depending on the registry of the alkane adsorbate relative to the graphite surface, explaining the characteristic moire pattern that is often observed in STM images with close packed alkyl assemblies.
机译:高度定向的热解石墨上紧密堆积的烷烃链的自组装单分子层的扫描隧道显微镜(STM)图像通常显示出交替的亮点和暗点图案。经典模拟表明,烷烃骨架的倾斜是不稳定的,因此不太可能解释对比度的变化。基于密度泛函理论的第一性原理计算表明,电子效应可以解释观察到的交替。此外,取决于链烷吸附物相对于石墨表面的配比,调节了与最小能量对准相关的不对称光斑图案,这解释了通常在具有紧密堆积的烷基组件的STM图像中观察到的典型莫尔图案。

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