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Plasticization in ultrathin polymer films: The role of supporting substrate and annealing

机译:超薄聚合物薄膜中的增塑:支撑衬底和退火的作用

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摘要

The effects of supporting substrate and thermal annealing on plasticization of poly(vinyl acetate) ultrathin films by absorption of ambient moisture have been studied by local dielectric spectroscopy. Upon exposure to ambient moisture, the relaxation rate of the α-process increases to a different extent at variance of film thicknesses and supporting substrates. Namely, on hydrophobic gold substrates the speeding up is slightly reduced by decrease of film thickness down to about 20 nm. Moreover, the increase of the relaxation rate measured on a 21 nm thick film supported on gold is smaller compared to that measured on a film with similar thickness supported on the relatively hydrophilic aluminum. We interpret such results in terms of the presence of an interfacial polymer layer at the substrate surface with different contents of water in dependence of the substrate. Furthermore, plasticization effect in ultrathin films significantly decreases after annealing at high temperature (~ T_g + 60 K) and for times longer than usual time scales of relaxation processes. Such results are consistent with the formation of a high-density irreversibly adsorbed polymer layer at the interface, able to hinder the effect of the substrate.
机译:通过局部介电谱研究了支撑衬底和热退火对聚乙酸乙烯酯超薄膜吸收环境水分增塑的影响。当暴露于环境湿气中时,α过程的松弛率会随着膜厚度和支撑基材的变化而不同程度地增加。即,在疏水性金基底上,通过将膜厚度减小至约20nm而使加速略微降低。而且,与在相对亲水的铝上具有相似厚度的膜上所测得的相比,在金上支撑的21nm厚的膜上所测得的弛豫率的增加较小。我们根据衬底表面上界面聚合物层的存在来解释这些结果,其中取决于衬底,水的含量不同。此外,在高温(〜T_g + 60 K)下退火后,超薄膜的增塑作用显着降低,并且其松弛时间比通常的松弛时间长。这样的结果与在界面处形成高密度的不可逆吸附的聚合物层是一致的,该聚合物层能够阻碍基材的作用。

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