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Adhesion Between Surfaces Separated by Molecularly Thin Perfluoropolyether Films

机译:分子间全氟聚醚薄膜分离的表面之间的粘附力

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The relationship between the adhesion of surfaces separated by a molecularly thin liquid film and the surface energy of the film was investigated. AFM-based force-distance curves were measured on a series of carbon surfaces coated with hydroxyl-terminated perfluoropolye-ther (PFPE) films. The surface energy of the PFPE films was varied by altering either the total film thickness or the bonding ratio of the film by changing the concentration of the PFPE film in the solution and/or the pull-rate during dip-coating. A linear relationship between adhesion force and surface energy was observed. Adhesion was found to vanish at non-zero values of surface energy. The experimental results indicate that the adhesive force between macroscopic bodies separated by molecularly thin liquid films is linearly proportional to the excess surface energy of the film.
机译:研究了由分子薄的液膜隔开的表面的粘附力与膜的表面能之间的关系。在一系列涂有羟基封端的全氟聚醚(PFPE)膜的碳表面上测量了基于AFM的力-距离曲线。 PFPE膜的表面能通过改变溶液中PFPE膜的浓度和/或浸涂过程中的上拉速率来改变总膜厚或膜的粘结比,从而改变其表面能。观察到粘附力和表面能之间的线性关系。发现在表面能的非零值处粘合力消失。实验结果表明,被分子薄的液膜分开的宏观物体之间的粘附力与膜的多余表面能成线性比例。

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