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首页> 外文期刊>Physical review, B >Atomic force microscopy contrast with CO functionalized tips in hydrogen-bonded molecular layers: Does the real tip charge distribution play a role?
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Atomic force microscopy contrast with CO functionalized tips in hydrogen-bonded molecular layers: Does the real tip charge distribution play a role?

机译:原子力显微镜与氢键分子层中的CO功能化提示对比:真正的尖端电荷分布是否发挥作用?

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摘要

The interplay of van der Waals (vdW), electrostatic (ES), and short-range (SR) interactions on both the intraand intermolecular contrast observed in high-resolution atomic force microscopy (HR-AFM) is explored in a hydrogen-bonded monolayer of triazine molecules. Our efficient model to simulate AFM images uses the three-dimensional (3D) charge distribution of both tip and sample to calculate the ES interaction, takes into account the tilting of the CO molecule, and reproduces with high accuracy density functional theory calculations. In spite of triazine's hexagonal structure, the intramolecular contrast has triangular symmetry, reflecting the charge density of the molecule. Stripelike intermolecular features, which join the molecules in the H-bond directions, originate from the overlap of the charge density of the atoms in neighboring molecules and are sharpened by the CO tilt. We demonstrate the existence of different potential energy surface minima for the CO tilt and discuss its influence on imaging. Our results clearly show that the ES interaction maps represent a local 3D average of the ES potential of the sample weighted by the tip's charge density, while the SR interaction resembles a local 3D average of the charge density of the sample. However, the strong cancellation of both contributions results in a net interaction dominated by the ES and vdW far from the molecules, and by the SR at short distance. This cancellation, which essentially removes the dependence on the detailed charge distribution of the tip, explains why AFM images can be reproduced using only sample properties such as the z component of the electric field and the charge density of the molecule, and the success of simple models that only incorporate pairwise, point-charge interactions.
机译:在高分辨率原子力显微镜显微镜(HR-AFM)中观察到的含氢单分子对比(HR-AFM)的van der WaaS(Vdw),静电(ES)和短范围(SR)相互作用的相互作用在氢键合键合的单层中探讨三嗪分子。我们的高效模型来模拟AFM图像使用尖端和样品的三维(3D)电荷分布来计算ES交互,考虑到CO分子的倾斜,并以高精度密度泛函理论计算再现。尽管三嗪的六边形结构,分子内对比具有三角对称,反映了分子的电荷密度。镶嵌分子分子特征,其加入H键方向上的分子,源自相邻分子中原子的电荷密度的重叠,并通过CO倾斜锐化。我们展示了CO倾斜的不同潜在能量表面最小值的存在,并讨论其对成像的影响。我们的结果清楚地表明,ES交互图代表了由尖端的充电密度加权的样品的ES电位的局部3D平均值,而Sr相互作用类似于样品的充电密度的局部3D平均值。然而,两种贡献的强烈取消导致由ES和VDW统治的净互动,远离分子,并且在短距离时由SR。这种取消基本上去除对尖端的详细电荷分布的依赖性,解释了为什么只使用诸如电场的Z分量的样本性能和分子的电荷密度的样本性能来再现AFM图像,以及简单的成功仅包含成对,点充电交互的模型。

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  • 来源
    《Physical review, B》 |2017年第7期|共9页
  • 作者单位

    Univ Autonoma Madrid Dept Fis Teor Mat Condensada E-28049 Madrid Spain;

    Univ Autonoma Madrid Dept Fis Teor Mat Condensada E-28049 Madrid Spain;

    Univ Autonoma Madrid Dept Fis Teor Mat Condensada E-28049 Madrid Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

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