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首页> 外文期刊>JETP Letters >Influence of the Size-Dependent Surface Tension of a Liquid Film on a Capillary Force in an Atomic Force Microscope
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Influence of the Size-Dependent Surface Tension of a Liquid Film on a Capillary Force in an Atomic Force Microscope

机译:液膜尺寸随表面张力的变化对原子力显微镜中毛细管力的影响

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摘要

An adsorbed water film always exists between the sample and the probing tip of an atomic force microscope operating at atmospheric conditions. A new expression for the capillary force that acts between the tip and the thin liquid film has been obtained taking into account the size dependence of the surface tension of the liquid described by an exact solution of the Gibbs-Tolman-Koenig-Buff equation. The calculation agrees fairly well with the experimental results.
机译:在样品和原子力显微镜在大气条件下工作的探针尖端之间始终存在吸附的水膜。考虑到由吉布斯-托尔曼-科尼希-巴夫方程式的精确解所描述的液体表面张力的大小依赖性,已经获得了作用在尖端与液体薄膜之间的毛细作用力的新表达式。计算结果与实验结果相当吻合。

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