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Validity of the Stokes-Einstein Relation in Soft Colloids up to the Glass Transition

机译:直到玻璃化转变的软胶体中斯托克斯-爱因斯坦关系的有效性

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摘要

We investigate the dynamics of kinetically frozen block copolymer micelles of different softness across a wide range of particle concentrations, from the fluid to the onset of glassy behavior, through a combination of rheology, dynamic light scattering, and pulsed field gradient NMR spectroscopy. We additionally perform Brownian dynamics simulations based on an ultrasoft coarse-grained potential, which are found to be in quantitative agreement with experiments, capturing even the very details of dynamic structure factors S(Q,t) on approaching the glass transition. We provide evidence that for these systems the Stokes-Einstein relation holds up to the glass transition; given that it is violated for dense suspensions of hard colloids, our findings suggest that its validity is an intriguing signature of ultrasoft interactions.
机译:我们通过流变学,动态光散射和脉冲场梯度NMR光谱学的方法,研究了从流体到玻璃态行为,在很宽的颗粒浓度范围内,不同柔软度的动力学冻结的嵌段共聚物胶束的动力学。我们还基于超软的粗粒度电势进行了布朗动力学仿真,发现该电势与实验定量一致,甚至捕获了接近玻璃化转变时动态结构因子S(Q,t)的非常详细的信息。我们提供的证据表明,对于这些系统,斯托克斯-爱因斯坦关系可以维持玻璃化转变。鉴于它违反了硬胶体的稠密悬浮液,我们的发现表明其有效性是超软相互作用的一个有趣的特征。

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