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漂浮薄聚合物薄膜的毛细管皱缩

Capillary wrinkling of floating thin polymer films.

作者信息

Huang Jiangshui, Juszkiewicz Megan, de Jeu Wim H, Cerda Enrique, Emrick Todd, Menon Narayanan, Russell Thomas P

机构信息

Department of Physics, University of Massachusetts, Amherst, MA 31003, USA.

出版信息

Science. 2007 Aug 3;317(5838):650-3. doi: 10.1126/science.1144616.

Abstract

A freely floating polymer film, tens of nanometers in thickness, wrinkles under the capillary force exerted by a drop of water placed on its surface. The wrinkling pattern is characterized by the number and length of the wrinkles. The dependence of the number of wrinkles on the elastic properties of the film and on the capillary force exerted by the drop confirms recent theoretical predictions on the selection of a pattern with a well-defined length scale in the wrinkling instability. We combined scaling relations that were developed for the length of the wrinkles with those for the number of wrinkles to construct a metrology for measuring the elasticity and thickness of ultrathin films that relies on no more than a dish of fluid and a low-magnification microscope. We validated this method on polymer films modified by plasticizer. The relaxation of the wrinkles affords a simple method to study the viscoelastic response of ultrathin films.

摘要

一种厚度为几十纳米的自由漂浮聚合物薄膜,在置于其表面的一滴水所施加的毛细力作用下会产生褶皱。褶皱图案的特征在于褶皱的数量和长度。褶皱数量对薄膜弹性特性以及液滴所施加毛细力的依赖性,证实了近期关于在褶皱不稳定性中选择具有明确长度尺度图案的理论预测。我们将针对褶皱长度所建立的标度关系与针对褶皱数量的标度关系相结合,构建了一种用于测量超薄膜弹性和厚度的计量方法,该方法仅需一盘液体和一台低倍显微镜。我们在由增塑剂改性的聚合物薄膜上验证了此方法。褶皱的松弛提供了一种研究超薄膜粘弹性响应的简单方法。

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