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不混溶聚合物-聚合物界面附近受限聚合物的增强动力学:中子反射率研究

Enhanced Dynamics of Confined Polymers near the Immiscible Polymer-Polymer Interface: Neutron Reflectivity Studies.

作者信息

Jo Kyoung-Il, Oh Younghoon, Sung Bong June, Kim Tae-Ho, Um Min Seop, Choi Woo Jin, Bang Joona, Yuan Guangcui, Satija Sushil K, Koo Jaseung

机构信息

Neutron Science Center, Korea Atomic Energy Research Institute (KAERI), Daejeon 34057, Korea.

Department of Chemical and Biological Engineering, Korea University, Seoul 02841, Korea.

出版信息

ACS Macro Lett. 2020 Feb 18;9(2):210-215. doi: 10.1021/acsmacrolett.9b01011. Epub 2020 Jan 30.

Abstract

For polymer-blend films, local dynamics in confined polymer domains tend to differ from the bulk because of significant contributions from the polymer-polymer interface. Herein, we investigated the diffusion dynamics of entangled polymer thin films confined between different polymers in a direction perpendicular to the surface using neutron reflectivity. We found that a bilayer of poly(methyl methacrylate) (PMMA) and deuterated PMMA (PMMA) sandwiched between polystyrene (PS) layers exhibited significant increase in mobility near the polymer-polymer interface with decreasing PMMA thickness. This indicates that the contribution of repulsive interactions at the immiscible polymer-polymer interface becomes more significant as the film thickness decreases. We also found that the interfacial roughness between PMMA and PS (28 Å at equilibrium) and soft confinement of PS layers did not significantly affect the change in the diffusion dynamics of the adjacent PMMA. This was evidenced by comparison with the diffusion results of multilayers with a flat interface (8 Å at equilibrium) between PMMA and hard PS by UV cross-linking.

摘要

对于聚合物共混薄膜,由于聚合物 - 聚合物界面的显著贡献,受限聚合物域中的局部动力学往往与本体不同。在此,我们使用中子反射率研究了在垂直于表面的方向上,夹在不同聚合物之间的缠结聚合物薄膜的扩散动力学。我们发现,夹在聚苯乙烯(PS)层之间的聚甲基丙烯酸甲酯(PMMA)和氘代聚甲基丙烯酸甲酯(PMMA)双层膜,随着PMMA厚度的减小,在聚合物 - 聚合物界面附近的迁移率显著增加。这表明,随着薄膜厚度减小,不相容聚合物 - 聚合物界面处排斥相互作用的贡献变得更加显著。我们还发现,PMMA和PS之间的界面粗糙度(平衡时为28 Å)以及PS层的软限制对相邻PMMA扩散动力学的变化没有显著影响。通过与通过紫外线交联在PMMA和硬PS之间具有平坦界面(平衡时为8 Å)的多层膜的扩散结果进行比较,证明了这一点。

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