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首页> 外文期刊>The Journal of Chemical Physics >Influence of chemistry, interfacial width, and non-isothermal conditions on spatially heterogeneous activated relaxation and elasticity in glass-forming free standing films
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Influence of chemistry, interfacial width, and non-isothermal conditions on spatially heterogeneous activated relaxation and elasticity in glass-forming free standing films

机译:化学,界面宽度和非等温条件对玻璃自由膜上的空间异质活性松弛和弹性的影响

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摘要

We employ the Elastically Collective Nonlinear Langevin Equation (ECNLE) theory of activated relaxation to study several questions in free standing thin films of glass-forming molecular and polymer liquids. The influence of non-universal chemical aspects on dynamical confinement effects is found to be relatively weak, but with the caveat that for the systems examined, the bulk ECNLE polymer theory does not predict widely varying fragilities. Allowing the film model to have a realistic vapor interfacial width significantly enhances the reduction of the film-averaged glass transition temperature, Tg, in a manner that depends on whether a dynamic or pseudo-thermodynamic averaging of the spatial mobility gradient is adopted. The nature of film thickness effects on the spatial profiles of the alpha relaxation time and elastic modulus is studied under non-isothermal conditions and contrasted with the corresponding isothermal behavior. Modest differences are found if a film-thickness dependent Tg is defined in a dynamical manner. However, adopting a pseudo-thermodynamic measure of Tg leads to a qualitatively new form of the alpha relaxation time gradient where highly mobile layers near the film surface coexist with strongly vitrified regions in the film interior. As a consequence, the film-averaged shear modulus can increase with decreasing film thickness, despite the Tg reduction and presence of a mobile surface layer. Such a behavior stands in qualitative contrast to the predicted mechanical softening under isothermal conditions. Spatial gradients of the elastic modulus are studied as a function of temperature, film thickness, probing frequency, and experimental protocol, and a rich behavior is found. Published by AIP Publishing.
机译:我们采用了激活放松的弹性集体非线性Langevin等式(Ecnle)理论,以研究玻璃形成分子和聚合物液体的自由静态薄膜中的几个问题。非通用化学方面对动态监禁效应的影响是相对较弱的,但是对于所检查系统的警告,散装eCnle聚合物理论并不能预测广泛变化的脆弱性。允许胶片模型具有现实的蒸汽界面宽度显着提高了膜平均玻璃化转变温度Tg的方式,这取决于采用空间移动性梯度的动态或伪热力学平均的方式。在非等温条件下研究了α弛豫时间和弹性模量的空间剖面上的膜厚度效应的性质,并与相应的等温行为形成对比。如果以动态方式定义薄膜厚度相关的Tg,则发现适度的差异。然而,采用TG的伪热力学测量导致α松弛时间梯度的定性新的形式,其中膜表面附近的高度移动层与薄膜内部的强玻璃区域共存。结果,尽管薄膜厚度降低和移动表面层的存在,但薄膜平均剪切模量可以随着膜厚度的降低而增加。这种行为与在等温条件下预测的机械软化的定性对比度。弹性模量的空间梯度作为温度,薄膜厚度,探测频率和实验方案的函数进行研究,并且发现了丰富的行为。通过AIP发布发布。

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