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水凝胶薄膜在硅基底上的肿胀诱导去粘接。

Swelling induced debonding of thin hydrogel films grafted on silicon substrates.

机构信息

Soft Matter Science and Engineering Laboratory (SIMM), CNRS UMR 7615, ESPCI Paris, PSL University, Sorbonne Université, F-75005 Paris, France.

University Grenoble Alpes, CEA, LETI, F-38000 Grenoble, France.

出版信息

Soft Matter. 2023 Jul 12;19(27):5169-5178. doi: 10.1039/d3sm00490b.

Abstract

We report on the delamination of thin (≈μm) hydrogel films grafted to silicon substrates under the action of swelling stresses. Poly(dimetylacrylamide) (PDMA) films are synthesized by simultaneously cross-linking and grafting preformed polymer chains onto the silicon substrate using a thiol-ene reaction. The grafting density at the film/substrate interface is tuned by varying the surface density of reactive thiol-silane groups on the silicon substrate. Delamination of the films from well controlled line defects with low adhesion is monitored under a humid water vapor flow ensuring full saturation of the polymer network. A propagating delamination of the film is observed under the action of differential swelling stresses at the debonding front. A threshold thickness for the onset of this delamination is evidenced which is increasing with grafting density while the debonding velocity is also observed to decrease with an increase in grafting density. These observations are discussed within the framework of a nonlinear fracture mechanics model which assumes that the driving force for crack propagation is the difference between the swelling state of the bonded and delaminated parts of the film. Using this model, the threshold energy for crack initiation was determined from the measured threshold thickness and discussed in relation to the surface density of reactive thiol groups on the substrate.

摘要

我们报告了在溶胀应力作用下,薄(≈μm)水凝胶膜从硅基底上分层的情况。聚(二甲基丙烯酰胺)(PDMA)薄膜是通过硫醇-烯反应在硅基底上同时交联和接枝预先形成的聚合物链合成的。通过改变硅基底上反应性硫醇-硅烷基团的表面密度,可以调节薄膜/基底界面处的接枝密度。在潮湿的水蒸气流中,确保聚合物网络完全饱和的情况下,监测到具有低附着力的良好控制的线缺陷下薄膜的分层。在脱粘前沿的差分溶胀应力作用下,观察到薄膜的扩展分层。证明了这种分层的起始存在一个阈值厚度,该厚度随接枝密度的增加而增加,而脱粘速度也随着接枝密度的增加而降低。这些观察结果在非线性断裂力学模型的框架内进行了讨论,该模型假设裂纹扩展的驱动力是薄膜结合和分层部分的溶胀状态之间的差异。使用该模型,从测量的阈值厚度确定了裂纹起始的阈值能,并与基底上反应性硫醇基团的表面密度相关进行了讨论。

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