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Glass Dynamics and Domain Size in a Solvent-Polymer Weak Gel Measured by Multidimensional Magnetic Resonance Relaxometry and Diffusometry

机译:多维磁共振弛豫和扩散法测量的溶剂-聚合物弱凝胶的玻璃动力学和畴尺寸

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摘要

Nuclear magnetic resonance measurements of rotational and translational molecular dynamics are applied to characterize the nanoscale dynamic heterogeneity of a physically cross-linked solvent-polymer system above and below the glass transition temperature. Measured rotational dynamics identify domains associated with regions of solidlike and liquidlike dynamics. Translational dynamics provide quantitative length and timescales of nanoscale heterogeneity due to polymer network cross-link density. Mean squared displacement measurements of the solvent provide microrheological characterization of the system and indicate glasslike caging dynamics both above and below the glass transition temperature.
机译:应用旋转和平移分子动力学的核磁共振测量来表征玻璃化转变温度之上和之下的物理交联溶剂-聚合物系统的纳米级动态异质性。测得的旋转动力学确定与固体和液体动力学区域相关的区域。由于聚合物网络的交联密度,平移动力学提供了定量的长度和纳米尺度异质性的时间尺度。溶剂的均方位移测量值提供了系统的微流变特性,并表明了在玻璃化转变温度之上和之下的类玻璃笼形动力学。

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