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聚(2-乙烯基吡啶)薄膜及吸附层的分子迁移率

Molecular mobility of thin films and the adsorbed layer of poly(2-vinylpyridine).

作者信息

Gawek Marcel, Szymoniak Paulina, Hülagü Deniz, Hertwig Andreas, Schönhals Andreas

机构信息

Bundesanstalt fuer Materialforschung und -prüfung (BAM), Unter den Eichen 87, 12205 Berlin, Germany.

Institut für Chemie, Technische Universität Berlin, Straße des 17. Juni 135, 10623 Berlin, Germany.

出版信息

Soft Matter. 2025 Jul 30;21(30):6120-6131. doi: 10.1039/d5sm00539f.

Abstract

The molecular dynamics of thin films and the adsorbed layer of poly(2-vinylpyridine) (P2VP) were investigated using broadband dielectric spectroscopy (BDS) and spectroscopic ellipsometry. Thin films of P2VP were prepared on silicon substrates and characterized to understand the influence of film thickness on the thermal glass transition temperature () and molecular mobility. The ellipsometric study revealed a decrease in with decreasing film thickness, attributed to the enhanced mobility at the polymer/air interface. The adsorbed layer, prepared the solvent leaching approach, exhibited a higher compared to the bulk, indicating reduced molecular mobility due to strong polymer substrate interactions. The dielectric measurements were carried out in two different electrode configurations, crossed electrode capacitors (CEC) and nanostructured electrodes (NSE), where the latter allows for a free surface layer at the polymer/air interface. The relaxation rates of the α-relaxation measured in the CEC geometry collapse into one chart independent from the film thickness. For the thin films measured in the NSE arrangement the relaxation rates slow down with decreasing film thickness which was discussed as related to a stronger interaction of the P2VP segments with the native SiO at the surface of the silicon substrate compared to aluminum. It is worth noting that the effect of the enhanced mobility at the polymer/air interface is not observed in the dielectric measurements. BDS measurements in NSE geometry identified an additional relaxation process (α*-relaxation) in thin films, which was more pronounced in the adsorbed layer. This process is hypothesized to be related to molecular fluctuations within the adsorbed layer including the adsorption/desorption dynamics of segments or to a slow Arrhenius process (SAP) related to the equilibration dynamics deep in the glassy state.

摘要

使用宽带介电谱(BDS)和光谱椭偏仪研究了聚(2-乙烯基吡啶)(P2VP)薄膜和吸附层的分子动力学。在硅衬底上制备了P2VP薄膜,并对其进行了表征,以了解薄膜厚度对热玻璃化转变温度()和分子迁移率的影响。椭偏研究表明,随着薄膜厚度的减小而降低,这归因于聚合物/空气界面处迁移率的增强。通过溶剂浸出法制备的吸附层与本体相比表现出更高的,这表明由于聚合物与衬底之间的强相互作用导致分子迁移率降低。介电测量是在两种不同的电极配置下进行的,即交叉电极电容器(CEC)和纳米结构电极(NSE),其中后者允许在聚合物/空气界面处有一个自由表面层。在CEC几何结构中测量的α弛豫的弛豫速率汇聚在一张与薄膜厚度无关的图表中。对于在NSE排列中测量的薄膜,弛豫速率随着薄膜厚度的减小而减慢,这被认为与P2VP链段与硅衬底表面的原生SiO相比与铝的更强相互作用有关。值得注意的是,在介电测量中未观察到聚合物/空气界面处迁移率增强的影响。在NSE几何结构中的BDS测量确定了薄膜中存在一个额外的弛豫过程(α*弛豫),该过程在吸附层中更为明显。这个过程被假设与吸附层内的分子涨落有关,包括链段的吸附/解吸动力学,或者与玻璃态深处的平衡动力学相关的慢阿累尼乌斯过程(SAP)。

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