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Liquid contact resonance AFM: analytical models, experiments, and limitations

机译:液体接触共振AFM:分析模型,实验和局限性

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摘要

Contact resonance AFM (CR-AFM) is a scanning probe microscopy technique that utilizes the contact resonances of the AFM cantilever for concurrent imaging of topography and surface stiffness. The technique has not been used in liquid until recently due to analytical and experimental difficulties, associated with viscous damping of cantilever vibrations and fluid loading effects. To address these difficulties, (i) an analytical approach for contact resonances in liquid is developed, and (ii) direct excitation of the contact resonances is demonstrated by actuating the cantilever directly in a magnetic field. By implementing the analytical approach and the direct actuation through magnetic particles, quantitative stiffness imaging on surfaces with a wide range of stiffness can be achieved in liquid with soft cantilevers and low contact forces.
机译:接触共振AFM(CR-AFM)是一种扫描探针显微镜技术,利用AFM悬臂的接触共振对地形和表面刚度进行同步成像。直到最近,由于与悬臂振动的粘性阻尼和流体载荷效应相关的分析和实验困难,该技术才在液体中使用。为了解决这些困难,(i)开发了一种用于液体中接触共振的分析方法,并且(ii)通过直接在磁场中致动悬臂来证明接触共振的直接激发。通过实施分析方法和通过磁性粒子的直接驱动,可以在具有软悬臂和低接触力的液体中实现具有宽范围的刚度的定量刚度成像。

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