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水凝胶滑动界面处分子吸附引起的摩擦:理论与实验

Friction through molecular adsorption at the sliding interface of hydrogels: theory and experiments.

作者信息

Ciapa Lola, Olanier Ludovic, Tran Yvette, Frétigny Christian, Chateauminois Antoine, Verneuil Emilie

机构信息

Soft Matter Science and Engineering (SIMM), ESPCI Paris, PSL University, Sorbonne Université, CNRS, F-75005 Paris, France.

出版信息

Soft Matter. 2024 Jul 31;20(30):5933-5944. doi: 10.1039/d4sm00313f.

Abstract

We report on the frictional properties of thin (≈μm) poly(dimethylacrylamide) hydrogel films within contacts with spherical silica probes. In order to focus on the contribution to friction of interfacial dissipation, a dedicated rotational setup is designed which allows to suppress poroelastic flows while ensuring a uniform velocity field at the sliding interface. The physical-chemistry of the interface is varied from the grafting of various silanes on the silica probes. Remarkably, we identify a velocity range in which the average frictional stress systematically varies with the logarithm of the sliding velocity. This dependency is found to be sensitive to the physical-chemistry of the silica surfaces. Experimental observations are discussed in the light of a molecular model where friction arises from thermally activated adsorption of polymer chains at the sliding interface, their elastic stretching and subsequent desorption. From this theoretical description, our experimental data provide us with adhesion energies and characteristic times for molecular adsorption that are found consistent with the physico-chemistry of the chemically-modified silica surfaces.

摘要

我们报告了薄(≈微米)聚(二甲基丙烯酰胺)水凝胶薄膜与球形二氧化硅探针接触时的摩擦特性。为了关注界面耗散对摩擦的贡献,设计了一种专门的旋转装置,该装置能够抑制孔隙弹性流动,同时确保滑动界面处的速度场均匀。通过在二氧化硅探针上接枝各种硅烷来改变界面的物理化学性质。值得注意的是,我们确定了一个速度范围,其中平均摩擦应力随滑动速度的对数系统地变化。发现这种依赖性对二氧化硅表面的物理化学性质敏感。根据分子模型对实验观察结果进行了讨论,在该模型中,摩擦源于聚合物链在滑动界面的热激活吸附、它们的弹性拉伸以及随后的解吸。从这一理论描述来看,我们的实验数据为我们提供了与化学改性二氧化硅表面的物理化学性质一致的分子吸附的粘附能和特征时间。

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