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首页> 外文期刊>The European physical journal, E. Soft matter >Glassy dynamics of soft matter under 1D confinement: How irreversible adsorption affects molecular packing, mobility gradients and orientational polarization in thin films
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Glassy dynamics of soft matter under 1D confinement: How irreversible adsorption affects molecular packing, mobility gradients and orientational polarization in thin films

机译:一维约束下软质的玻璃态动力学:不可逆吸附如何影响薄膜中的分子堆积,迁移率梯度和取向极化

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The structural dynamics of polymers and simple liquids confined at the nanometer scale has been intensively investigated in the last two decades in order to test the validity of theories on the glass transition predicting a characteristic length scale of a few nanometers. Although this goal has not yet been reached, the anomalous behavior displayed by some systems -e.g. thin films of polystyrene exhibit reductions of T_g exceeding 70K and a tremendous increase in the elastic modulus- has attracted a broad community of researchers, and provided astonishing advancement of both theoretical and experimental soft matter physics. 1D confinement is achieved in thin films, which are commonly treated as systems at thermodynamic equilibrium where free surfaces and solid interfaces introduce monotonous mobility gradients, extending for several molecular sizes. Limiting the discussion to finite-size and interfacial effects implies that film thickness and surface interactions should be sufficient to univocally determine the deviation from bulk behavior. On the contrary, such an oversimplified picture, although intuitive, cannot explain phenomena like the enhancement of segmental mobility in proximity of an adsorbing interface, or the presence of long-lasting metastable states in the liquid state. Based on our recent work, we propose a new picture on the dynamics of soft matter confined in ultrathin films, focusing on non-equilibrium and on the impact of irreversibly chain adsorption on the structural relaxation. We describe the enhancement of dynamics in terms of the excess in interfacial free volume, originating from packing frustration in the adsorbed layer (Guiselin brush) at t~? 《 1, where t~? is the ratio between the annealing time and the time scale of adsorption. Prolonged annealing at times exceeding the reptation time (usually t~? 》 1) induces densification, and thus reduces the deviation from bulk behavior. In this Colloquium, after reviewing the experimental approaches permitting to investigate the structural relaxation of films with one, two or no free surfaces by means of dielectric spectroscopy, we propose several methods to determine gradients of mobility in thin films, and then discuss on the unexploited potential of analyses based on the time, temperature and thickness dependence of the orientational polarization via the dielectric strength.
机译:在过去的二十年中,对聚合物和简单液体限制在纳米尺度上的结构动力学进行了深入研究,以测试预测几纳米特征长度尺度的玻璃化转变理论的有效性。尽管尚未达到此目标,但某些系统显示的异常行为-例如聚苯乙烯薄膜的T_g降低超过70K,并且弹性模量大大提高,吸引了广泛的研究人员,为理论和实验软物质物理学提供了惊人的进步。一维限制是在薄膜中实现的,通常将其视为处于热力学平衡状态的系统,其中自由表面和固体界面会引入单调迁移率梯度,并延伸出多种分子大小。将讨论限制在有限的尺寸和界面效应,意味着膜的厚度和表面相互作用应足以确定与本体行为的偏差。相反,这种过分简化的图片虽然直观,但不能解释诸如吸附界面附近的分段迁移率增强或液态中存在持久的亚稳态之类的现象。基于我们最近的工作,我们提出了关于超薄膜中限制的软物质动力学的新图景,重点是非平衡以及不可逆链吸附对结构弛豫的影响。我们根据界面自由体积的过量来描述动力学的增强,这是由于在t〜?时吸附层(Guiselin刷)中的填充物受压而导致的。 《 1,哪里〜是退火时间与吸附时间标度之间的比率。在超过复制时间(通常为t〜?》 1)的时间上进行长时间退火会引起致密化,从而减小与整体行为的偏差。在本次座谈会中,在回顾了允许通过介电谱研究具有一个,两个或没有自由表面的膜的结构弛豫的实验方法之后,我们提出了几种确定薄膜迁移率梯度的方法,然后讨论了未利用的方法。基于介电强度的方向极化的时间,温度和厚度依赖性的分析电势。

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