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3D depth profiling of the interaction between an AFM tip and fluid polymer solutions

机译:3 d之间的互动的深度剖析AFM和液体聚合物解决方案

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摘要

In the atomic force microscopy (AFM) investigation of soft polymers and liquids, the tip-sample interaction is dominated by long-range van der Waals forces, capillary forces and adhesion. Furthermore, the tip can indent several tens of nanometres into the surface, and it can pull off a polymer filament from the surface. Therefore, measuring the unperturbed shape of a polymeric fluid can be challenging. Here, we study the tip-sample interaction with polystyrene droplets swollen in chloroform vapour, where we can utilize the solvent vapour concentration to adjust the specimen's mechanical properties from a stiff solid to a fluid film. With the same AFM tip, we use two different AFM force spectroscopy methods to measure three-dimensional (3D) depth profiles of the tip-sample interaction: force-distance (FD) curves and amplitude-phase-distance (APD) curves. The 3D depth profiles reconstructed from FD and APD measurements provide detailed insight into the tip-sample interaction mechanism for a fluid polymer solution. The fluid's intrinsic relaxation time, which we measure with an AFM-based step-strain experiment, is essential for understanding the tip-sample interaction mechanism. Furthermore, measuring 3D depth profiles and using APD data to reconstruct the unperturbed surface comprise a versatile methodology for obtaining accurate dimensional measurements of fluid and gel-like objects on the nanometre scale.
机译:在原子力显微镜(AFM)的调查tip-sample柔软的聚合物和液体交互是远程van der瓦尔斯力,毛细管力和附着力。此外,可以缩进几个的纳米表面,它可以完成聚合物纤维的表面。测量聚合物的非微扰的形状流体可能是一个挑战。与聚苯乙烯滴tip-sample交互在氯仿蒸汽膨胀,我们可以利用溶剂蒸汽的浓度调整试样的力学性能一个僵硬的固体液体膜。提示,我们使用两种不同的AFM力谱方法测量三维(3 d)深度tip-sample交互的配置文件:force-distance (FD)曲线和amplitude-phase-distance (adp)曲线。深度剖面重建FD和美国测量提供详细的见解tip-sample流体的相互作用机制聚合物溶液。弛豫时间,我们测量的AFM-based step-strain实验中,是至关重要的为理解tip-sample交互机制。概要文件和使用adp数据重建平静的表面组成了通用的方法获取准确的尺寸测量液体和胶状物体纳米尺度。

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