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相邻亲水性聚合物薄膜对聚(丁基降冰片烯-羟基六氟异丙基降冰片烯)薄膜物理老化和残余应力的影响

Effect of Adjacent Hydrophilic Polymer Thin Films on Physical Aging and Residual Stress in Thin Films of Poly(butylnorbornene-hydroxyhexafluoroisopropyl norbornene).

作者信息

Lewis Elizabeth A, Stafford Christopher M, Vogt Bryan D

机构信息

Department of Polymer Engineering, University of Akron, Akron, OH 44325 USA.

Materials Science and Engineering Division, National Institute of Standards and Technology, Gaithersburg, MD 20899 USA.

出版信息

J Polym Sci B Polym Phys. 2019;57(15). doi: 10.1002/polb.24855.

Abstract

The properties of thin supported polymer films can be dramatically impacted by the substrate upon which it resides. A simple way to alter the properties of the substrate (chemistry, rigidity, dynamics) is by coating it with an immiscible polymer. Here we describe how ultrathin (ca. 2 nm) hydrophilic polymer layers of poly(acrylic acid), PAA, and poly(styrenesulfonate), PSS, impact the aging behavior and the residual stress in thin films of poly(butylnorbornene--hydroxyhexafluoroisopropyl norbornene), BuNB--HFANB. The aging rate decreases as the film thickness () is decreased, but the extent of this change depends on the adjacent layer. Even for the thickest films (>500 nm), there is a decrease in the aging rate at 100 °C when BuNB-r-HFANB is in contact with PSS. In an effort to understand the origins of these differences in the aging behavior, the elastic modulus and residual stress (σ) in the films were determined by wrinkling as a function of aging time. The change in the elastic modulus during aging does not appear to be directly correlated with the densification or expansion of the films, but the aging rates appear to roughly scale as σ . These results illustrate that the physical aging of thin polymer films can be altered by adjacent polymers.

摘要

支撑聚合物薄膜的性能会受到其所在基底的显著影响。改变基底性能(化学性质、刚性、动力学性质)的一种简单方法是用不相容聚合物对其进行涂层处理。在此,我们描述了聚(丙烯酸)(PAA)和聚(苯乙烯磺酸盐)(PSS)的超薄(约2纳米)亲水性聚合物层如何影响聚(丁基降冰片烯 - 羟基六氟异丙基降冰片烯)(BuNB - HFANB)薄膜的老化行为和残余应力。老化速率随薄膜厚度()的减小而降低,但这种变化的程度取决于相邻层。即使对于最厚的薄膜(>500纳米),当BuNB - r - HFANB与PSS接触时,在100°C下老化速率也会降低。为了理解这些老化行为差异的根源,通过皱纹法测定了薄膜的弹性模量和残余应力(σ)随老化时间的变化。老化过程中弹性模量的变化似乎与薄膜的致密化或膨胀没有直接关联,但老化速率似乎大致与σ成比例。这些结果表明,相邻聚合物可以改变聚合物薄膜的物理老化过程。

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