论文标题
多醇玻璃动力学:分子间简单与分子内复杂性
Glassy Dynamics in Polyalcohols: Intermolecular Simplicity vs. Intramolecular Complexity
论文作者
论文摘要
使用去极化的光散射,我们最近表明,在多种超冷液体中的结构放松随后呈良好近似,具有高频功率定律$ω^{ - 1/2} $的通用线形状。现在,我们通过研究系统的一系列多理酒精(PA)来继续这项研究,该系统经常用作玻璃科学中的模型系统,因为它们各自的介电损耗光谱的宽度沿该系列沿线差异很大。我们的结果表明,观察到的放松行为的显微镜起源在不同的PA之间有很大差异:而短链的PA(如甘油(如甘油)旋转,随着或多或少的刚性实体及其光散射光谱遵循诸如山梨糖醇(例如山皮酚)之类的长期链状PA,如山地质醇(如山地质酚)表现出明显的内部内部动力学在结构放松的时间尺度上,从而使系统的变化与系统的变化,从而构成了系统的启动。基于这些发现,我们讨论了观察超冷液体中普通形状的重要局限性:被探测的动力学需要反映分子间动态异质性,并且不得因分子内动态异质性的影响而叠加。
Using depolarized light scattering, we have recently shown that structural relaxation in a broad range of supercooled liquids follows, to good approximation, a generic line shape with high-frequency power law $ω^{-1/2}$. We now continue this study by investigating a systematic series of polyalcohols (PAs), frequently used as model systems in glass-science, i.a., because the width of their respective dielectric loss spectra varies strongly along the series. Our results reveal that the microscopic origin of the observed relaxation behavior varies significantly between different PAs: While short-chained PAs like glycerol rotate as more or less rigid entities and their light scattering spectra follow the generic shape, long-chained PAs like sorbitol display pronounced intramolecular dynamic contributions on the time scale of structural relaxation, leading to systematic deviations from the generic shape. Based on these findings we discuss an important limitation for observing the generic shape in a supercooled liquid: The dynamics that is probed needs to reflect the intermolecular dynamic heterogeneity, and must not be superimposed by effects of intramolecular dynamic heterogeneity.