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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Capillary against adhesion forces during drying of particle submonolayers on a solid substrate
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Capillary against adhesion forces during drying of particle submonolayers on a solid substrate

机译:在固体基质上干燥颗粒亚单层时,毛细管抵抗粘附力

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摘要

This work deals with the common atomic force microscopy observation that small particles weakly adhering to a substrate tend to form aggregates at least when imaged under air. We show that it is possible to measure the coverage of mica surfaces with alpha-Al2O3 colloids in situ by means of static light scattering. The dynamic properties of the speckled pattern obtained from the layer are also used to probe the dynamic of the particles. It is then concluded that even the weakest adhesion of the particles does not allow in situ aggregation and surface mobility (at least, on the time scale of the laboratory experiment). The adhering particles aggregate only during the drying stage, due to the action of lateral capillary forces. A model for the aggregation mechanism is introduced taking into account the balance of forces acting on the particles during the drying stage. [References: 18]
机译:这项工作处理了常见的原子力显微镜观察,即至少当在空气中成像时,弱附着在基材上的小颗粒往往会形成聚集体。我们表明,可以通过静态光散射原位测量具有α-Al2O3胶体的云母表面的覆盖率。从该层获得的斑点图案的动力学性质也用于探测颗粒的动力学。然后得出的结论是,即使最弱的颗粒附着力也不允许原位聚集和表面迁移(至少在实验室实验的时间范围内)。由于横向毛细管力的作用,粘附的颗粒仅在干燥阶段聚集。考虑到在干燥阶段作用在颗粒上的力的平衡,引入了一种聚集机制的模型。 [参考:18]

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