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首页> 外文期刊>Nanotechnology >Understanding 2D atomic resolution imaging of the calcite surface in water by frequency modulation atomic force microscopy
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Understanding 2D atomic resolution imaging of the calcite surface in water by frequency modulation atomic force microscopy

机译:通过调频原子力显微镜理解水中方解石表面的2D原子分辨率成像

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Frequency modulation atomic force microscopy (FM-AFM) experiments were performed on the calcite (1014) surface in pure water, and a detailed analysis was made of the 2D images at a variety of frequency setpoints. We observed eight different contrast patterns that reproducibly appeared in different experiments and with different measurement parameters. We then performed systematic free energy calculations of the same system using atomistic molecular dynamics to obtain an effective force field for the tip-surface interaction. By using this force field in a virtual AFM simulation we found that each experimental contrast could be reproduced in our simulations by changing the setpoint, regardless of the experimental parameters. This approach offers a generic method for understanding the wide variety of contrast patterns seen on the calcite surface in water, and is generally applicable to AFM imaging in liquids.
机译:在纯水中的方解石(1014)表面上进行频率调制原子力显微镜(FM-AFM)实验,并在各种频率设定点处的2D图像进行详细分析。 我们观察到八种不同的对比模式,可重复出现在不同的实验中并具有不同的测量参数。 然后,我们使用原子分子动力学对相同系统进行系统的自由能量计算,以获得用于尖端表面相互作用的有效力场。 通过在虚拟AFM模拟中使用该力字段,我们发现通过改变设定值,无论实验参数如何,都可以在我们的模拟中再现每个实验对比。 该方法提供了一种通用方法,用于了解水中的方解石表面上看到的各种对比度模式,通常适用于液体中的AFM成像。

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