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The Glass-Transition Temperature of Supported PMMA Thin Films with Hydrogen Bond/Plasmonic Interface

机译:具有氢键/等离子体界面的负载型PMMA薄膜的玻璃化温度

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摘要

The interfacial effect is one of the significant factors in the glass-transition temperature (Tg) of the polymeric thin film system, competing against the free surface effect. Herein, the Tgs of poly (methyl methacrylate) (PMMA) films with different thicknesses and substrates are studied by fluorescence measurements, focusing on the influence of interfacial effects on the Tgs. The strong interaction between PMMA and quartz substrate leads to increased Tgs with the decreased thickness of the film. The plasmonic silver substrate causes enhanced fluorescence intensity near the interface, resulting in the delayed reduction of the Tgs with the increasing film thickness. Moreover, as a proof of the interface-dependent Tgs, hydrogen bonds of PMMA/quartz and molecules orientation of PMMA/silver are explored by the Raman spectroscopy, and the interfacial interaction energy is calculated by the molecular dynamics simulation. In this study, we probe the inter-relationship between the interfacial interactions arising from the different substrates and the Tg behavior of polymer thin films.
机译:界面效应是聚合物薄膜系统的玻璃化转变温度(Tg)中与自由表面效应竞争的重要因素之一。在此,通过荧光测量研究了具有不同厚度和基底的聚(甲基丙烯酸甲酯)(PMMA)膜的Tg,重点在于界面效应对Tgs的影响。 PMMA与石英基板之间的强相互作用会导致Tgs的增加,同时薄膜的厚度也会减小。等离子体银基底在界面附近引起增强的荧光强度,导致随着膜厚度的增加,Tgs的延迟降低。此外,作为界面依赖性Tgs的证明,通过拉曼光谱研究了PMMA /石英的氢键和PMMA /银的分子取向,并通过分子动力学模拟计算了界面相互作用能。在这项研究中,我们探讨了由不同基材引起的界面相互作用与聚合物薄膜的Tg行为之间的相互关系。

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