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Imaging of soft matter with tapping-mode atomic force microscopy and non-contact-mode atomic force microscopy

机译:轻敲模式原子力显微镜和非接触模式原子力显微镜对软物质的成像

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摘要

In this work, we take topographic images of DNA molecules and nanometre- sized polystyrene spheres in air as well as in water using an atomic force microscope ( AFM). We would like to compare the applied forces and the resolution for images taken with the amplitude- modulation ( AM) detection, or the tapping mode, and the frequency- modulation ( FM) detection, or the non- contact ( NC) mode. Experiments for these two modes are carried out on the same area of the samples, with the same tip, under the same environment, and with the same oscillation amplitude. Our experiments indicate that, in the FM mode, the tip exerts a very gentle force on soft materials and provides a height measurement close to the true value. In the AM mode, the tip exerts a stronger force on soft materials and causes their deformation, especially in the liquid environment. The resolution of the FM mode is about the same as that of the AM mode for operation in air, but the former is significantly superior to the latter in water. We thus conclude that the FM mode can obtain images with a higher resolution and provides a sufficient sensitivity to image the true and fine structure of soft matter on surfaces.
机译:在这项工作中,我们使用原子力显微镜(AFM)拍摄了空气和水中的DNA分子和纳米级聚苯乙烯球的地形图。我们想比较使用振幅调制(AM)检测或敲击模式,频率调制(FM)检测或非接触(NC)模式拍摄的图像所施加的力和分辨率。这两种模式的实验是在样品的相同区域,相同尖端,相同环境,相同振荡幅度下进行的。我们的实验表明,在FM模式下,尖端对柔软的材料施加非常轻柔的力,并提供接近真实值的高度测量值。在AM模式下,尖端在软质材料上施加更大的力并导致其变形,尤其是在液体环境中。在空中操作时,FM模式的分辨率与AM模式下的分辨率大致相同,但在水中,前者要明显优于后者。因此,我们得出的结论是,调频模式可以获得更高分辨率的图像,并提供足够的灵敏度来对表面上的软物质的真实和精细结构进行成像。

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