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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >CONTACT ANGLE MICROSCOPY ON A CARBOSILANE DENDRIMER WITH HYDROXYL END GROUPS - METHOD FOR MESOSCOPIC CHARACTERIZATION OF THE SURFACE STRUCTURE
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CONTACT ANGLE MICROSCOPY ON A CARBOSILANE DENDRIMER WITH HYDROXYL END GROUPS - METHOD FOR MESOSCOPIC CHARACTERIZATION OF THE SURFACE STRUCTURE

机译:具有羟基端基的碳硅烷树枝状分子的接触角显微镜-表面结构的介观表征方法。

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摘要

A carbosilane dendrimer containing hydroxyl terminal groups, which showed two types of wetting in dependence of the substrate used, was studied by tapping force microscopy. Due to the preferential adsorption of the hydroxyl groups, the dendrimer displayed autophobic spreading on mice, whereas a substrate which was first coated with a semifluorinated polymer was only partially wetted. In both cases, submicrometer-sized droplets were deposited on the surface. Microscopic contact angles were measured and compared with macroscopic values obtained by a standard sessile drop technique. The comparison showed lower values for the microscopic angle which were explained by deformation of the droplets caused by the tapping tip. The oscillatory motions of the tip intermittently touching a viscoelastic sample were calculated using a simple model of the tapping mode. The indentation of the tip into the sample and the induced phase shift relative to the oscillations in air were determined from the model, showing a good agreement with experimental results. Compared to traditional methods, this approach offers advantages such as (i) three-dimensional visualization of the whole droplet, (ii) submicrometer resolution of the structure near the three-phase boundary, and (iii) accurate determination of small contact angles. [References: 47]
机译:通过拍打力显微镜研究了含有羟基端基的碳硅烷树状大分子,其根据所使用的底物表现出两种润湿性。由于羟基的优先吸附,树枝状聚合物在小鼠上表现出自憎性扩散,而首先涂覆有半氟化聚合物的基材仅被部分润湿。在这两种情况下,亚微米大小的液滴都沉积在表面上。测量微观接触角,并将其与通过标准固定滴技术获得的宏观值进行比较。比较显示出较低的微观角度值,这是由攻丝尖端引起的液滴变形所解释的。使用攻丝模式的简单模型来计算间歇接触粘弹性样品的尖端的振荡运动。从模型中确定了尖端到样品中的压痕以及相对于空气振荡引起的相移,这与实验结果非常吻合。与传统方法相比,此方法具有以下优点:(i)整个液滴的三维可视化;(ii)三相边界附近结构的亚微米分辨率;以及(iii)小接触角的精确确定。 [参考:47]

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