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Measuring the true height of water films on surfaces

机译:测量表面水膜的真实高度

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Measuring the level of hydrophilicity of heterogeneous surfaces and the true height of water layers that form on them in hydrated conditions has a myriad of applications in a wide range of scientific and technological fields. Here, we describe a true non-contact mode of operation of atomic force microscopy in ambient conditions and a method to establish the source of apparent height. A dependency of the measured water height on operational parameters is identified with water perturbations due to uncontrolled modes of imaging where intermittent contact with the water layer, or even the surface, might occur. In this paper we show how to (1)determine when the water is being perturbed and (2)distinguish between four different interaction regimes. Each of the four types of interaction produces measurements ranging from fractions of the true height in one extreme to values which are as large as four times the real height in the other. We show the dependence of apparent height on the interaction regime both theoretically and empirically. The agreement between theory and experiment on a BaF2(111) sample displaying wet and un-wet regions validates our results.
机译:测量非均质表面的亲水性水平和在水合条件下在其上形成的水层的真实高度,在广泛的科学和技术领域中都有无数的应用。在这里,我们描述了在环境条件下原子力显微镜的一种真正的非接触式操作模式,以及一种建立视在高度来源的方法。由于不受控制的成像模式可能会与水层甚至表面发生间歇性接触,因此,由于水的扰动,可以确定水的高度对运行参数的依赖性。在本文中,我们展示了如何(1)确定水何时受到扰动以及(2)区分四种不同的相互作用机制。四种类型的交互中的每一种都会产生测量值,范围从一个极端中的真实高度的分数到另一个极端中的真实高度的四倍的值。我们从理论上和经验上都表明了表观高度对相互作用机制的依赖性。 BaF2(111)样品显示湿区和非湿区的理论与实验之间的一致性验证了我们的结果。

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