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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Distinguishing between Mechanical and Electrostatic Interaction in Single Pass Multi Frequency Electrostatic Force Microscopy Measurements on a Molecular Material
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Distinguishing between Mechanical and Electrostatic Interaction in Single Pass Multi Frequency Electrostatic Force Microscopy Measurements on a Molecular Material

机译:分子材料单次多频静电力显微镜测量中机械相互作用和静电相互作用的区别

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摘要

Single-pass electrostatic force microscopy is postulated as one of the most advanced techniques in terms of spatial resolution and fastness in data acquisition for the study of electrostatic phenomena at the nanoscale. However, crosstalk anomalies, in which mechanical interactions combine with tip sample electrostatic forces, are still a major issue to overcome, specifically in soft and biological samples. In this paper we propose a novel method based on bimodal-atomic force microscopy to distinguish mechanical crosstalk from electrostatic images. The method is, based in the comparison of bimodal AFM images with electrostatic ones, where pure mechanical interaction can be discerned from a mixture of mechanical and electrostatic interactions. The proposed method is optimized and demonstrated using a supramolecular charge transfer material. Finally, the method is used as a tool to depict different crosstalk levels in tetrathiafulvalene-based (TTF) assemblies, discerning between electrical and mechanical interactions. This kind of observation is important for obtaining accurate descriptions of charge distribution in samples made from organic and molecular layers and materials.
机译:就空间分辨率和数据采集的牢度而言,单次通过静电力显微镜被认为是最先进的技术之一,用于研究纳米级的静电现象。但是,串扰异常仍然是要克服的主要问题,尤其是在软样品和生物样品中,其中机械相互作用与尖端样品的静电力相结合。在本文中,我们提出了一种基于双峰原子力显微镜的新方法,以区分机械串扰和静电图像。该方法基于双峰AFM图像与静电图像的比较,其中可以从机械和静电相互作用的混合物中识别出纯机械相互作用。使用超分子电荷转移材料对提出的方法进行了优化和论证。最后,该方法用作描述基于四硫富瓦烯(TTF)组件中不同串扰水平的工具,从而可以识别电气和机械相互作用。这种观察对于获得由有机层和分子层以及材料制成的样品中电荷分布的准确描述非常重要。

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