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Exploring Molecules beyond CO as Tip Functionalizationsin High-Resolution Noncontact Atomic Force Microscopy: A First PrinciplesApproach

机译:尖端功能化探索CO以外的分子高分辨率非接触原子力显微镜的研究:第一原理方法

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摘要

Atomic resolution of molecules has been achieved using noncontact atomic force microscopy (AFM) with the key step to functionalize the tip apex by attaching suitable molecules so as to achieve high spatial resolution through a sharper tip. A few molecular terminations have been explored theoretically and experimentally, and they exhibit various imaging behaviors. Here, we explore the influence of the structures and chemical compositions of various molecular candidates as tips on the contrast of AFM images by a first principles approach. Our results reveal that the two end atoms of a linear molecule terminating nearest the sample dominate the imaging behaviors, for example, atomic resolution, sharpness, distortion, and so forth, whereas the symmetry of the termination plays an important role in the distortion of AFM images. These findings suggest that new tip terminations can be engineered by decoupling the three end atoms responsible for imaging behaviors from the tip structure behind them, which is attached to the macro tip apex.
机译:使用非接触原子力显微镜(AFM)已经实现了分子的原子分辨率,关键步骤是通过附着合适的分子来使尖端顶点功能化,从而通过更尖锐的尖端实现高空间分辨率。在理论上和实验上已经探索了一些分子末端,它们表现出各种成像行为。在这里,我们通过第一原理方法探索各种分子候选物的结构和化学组成的影响,作为对AFM图像对比度的提示。我们的结果表明,最接近样品终止的线性分子的两个末端原子支配着成像行为,例如原子分辨率,清晰度,畸变等,而终止的对称性在AFM畸变中起着重要作用图片。这些发现表明,可以通过将负责成像行为的三个末端原子从其背后的末端结构(与宏观末端顶点相连)解耦,从而设计出新的末端末端。

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