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首页> 外文期刊>The Journal of Chemical Physics >Unexpected impact of irreversible adsorption on thermal expansion: Adsorbed layers are not that dead
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Unexpected impact of irreversible adsorption on thermal expansion: Adsorbed layers are not that dead

机译:不可逆吸附对热膨胀的意外影响:吸附层不是那么死

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We investigated the impact of irreversible adsorption on the mechanisms of thermal expansion of 1D confined polymer layers. For spincoated films (polystyrene on aluminum) of constant thickness, the thermal expansion coefficient of the melt drops upon annealing following the kinetics of irreversible adsorption of the chains onto the supporting substrate, while the thermal expansion of the glass is annealing invariant. These perturbations are explained in terms of the reduction in free volume content, upon immobilization of monomers onto the substrate. To shed more light on this phenomenon, we performed an extensive investigation of the thermal expansion of irreversibly adsorbed layers of polystyrene on silicon oxide. We verified that, contrarily to recent speculations, these films cannot be modeled as dead layers-immobilized slabs lacking of segmental relaxation. On the contrary, thin adsorbed layers show an increase in thermal expansion with respect to the bulk, due to packing frustration. Immobilization plays a role only when the thickness of the adsorbed layers overcomes similar to 10 nm. Finally, we showthat for adsorbed layers the difference in thermal expansion between the melt and the glass is sufficiently high to investigate the glass transition down to 3 nm. Owing to this unique feature, not shared by spincoated films, adsorbed layers are the perfect candidate to study the properties of extremely thin polymer films. Published by AIP Publishing.
机译:我们调查了不可逆吸附对1D限制聚合物层的热膨胀机制的影响。对于恒定的厚度旋涂膜(铝聚苯乙烯),熔体的热膨胀系数下降在退火之后的链的不可逆吸附的动力学到支撑基板,而玻璃的热膨胀被退火不变。在将单体固定到基材上时,就自由体积含量的降低来解释这些扰动。在这种现象上揭示更多的光线,我们对氧化硅的不可逆吸附层的不可逆吸附层的热膨胀进行了广泛的研究。我们验证了与最近的猜测,这些电影不能被建模为缺乏节段放松的死层。相反,由于包装挫折,薄吸附层显示出散装的热膨胀增加。仅当吸附层的厚度克服类似于10nm时,仅仅才发挥作用。最后,我们为吸附层显示熔体和玻璃之间的热膨胀差足够高,以研究玻璃过渡到3nm。由于这种独特的特征,而不是由基底薄膜共用,吸附层是研究极薄的聚合物膜性能的完美候选者。通过AIP发布发布。

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