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Nano-Wilhelmy investigation of dynamic wetting properties of AFM tips through tip-nanobubble interaction

机译:通过针尖-纳米气泡相互作用对AFM针尖的动态润湿特性进行纳米Wilhelmy研究

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摘要

The dynamic wetting properties of atomic force microscopy (AFM) tips are of much concern in many AFM-related measurement, fabrication, and manipulation applications. In this study, the wetting properties of silicon and silicon nitride AFM tips are investigated through dynamic contact angle measurement using a nano-Wilhelmy balance based method. This is done by capillary force measurement during extension and retraction motion of AFM tips relative to interfacial nanobubbles. The working principle of the proposed method and mathematic models for dynamic contact angle measurement are presented. Geometric models of AFM tips were constructed using scanning electronic microscopy (SEM) images taken from different view directions. The detailed process of tip-nanobubble interaction was investigated using force-distance curves of AFM on nanobubbles. Several parameters including nanobubble height, adhesion and capillary force between tip and nanobubbles are extracted. The variation of these parameters was studied over nanobubble surfaces. The dynamic contact angles of the AFM tips were calculated from the capillary force measurements. The proposed method provides direct measurement of dynamic contact angles for AFM tips and can also be taken as a general approach for nanoscale dynamic wetting property investigation.
机译:在许多与AFM相关的测量,制造和操纵应用中,原子力显微镜(AFM)吸头的动态润湿特性引起了很多关注。在这项研究中,硅和氮化硅原子力显微镜针尖的润湿性能是通过使用基于纳米-威廉密尔平衡法的动态接触角测量来研究的。这是通过在AFM尖端相对于界面纳米气泡的伸展和收缩运动期间进行毛细管力测量来完成的。提出了该方法的工作原理和动态接触角测量的数学模型。 AFM笔尖的几何模型是使用从不同视角拍摄的扫描电子显微镜(SEM)图像构建的。使用原子力显微镜在纳米气泡上的力-距离曲线研究了尖端-纳米气泡相互作用的详细过程。提取了包括纳米气泡高度,尖端和纳米气泡之间的粘附力和毛细作用力在内的几个参数。在纳米气泡表面上研究了这些参数的变化。 AFM尖端的动态接触角由毛细力测量值计算得出。所提出的方法可以直接测量AFM尖端的动态接触角,也可以作为研究纳米级动态润湿性能的通用方法。

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