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Dielectric study of probe rotation in viscous liquids

机译:粘性液体中探针旋转的介电研究

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Dielectric molecular probes are employed to assess the averaging required for a transition from heterogeneous to More hydrodynamic rotational behaviour in supercooled liquids. The degree of averaging is controlled by the size of the probe molecular relative to the liquid constituents. Larger solutes exhibit longer time constants and more exponential dynamics its a result of effective time averaging over fluctuating environments. With this approach, the time scale of rate exchange is measured across a range of eight decades, in which the characteristic relaxation time varies from 5s to 50 ns. The sharp transition from dispersive to exponential probe rotation suggests that rate exchange occurs on the time scale of the slowest time constant of structural relaxation. No change in the environmental fluctuation to structural relaxation time ratio is observed across this wide range of frequencies.
机译:使用介电分子探针来评估在过冷液体中从非均质旋转行为转变为更多流体动力旋转行为所需的平均值。平均程度由探针分子相对于液体成分的大小控制。较大的溶质具有更长的时间常数和更多的指数动力学,这是在波动的环境中有效时间平均的结果。通过这种方法,速率交换的时间尺度可在八十年的范围内测量,其中特征弛豫时间从5s到50ns不等。从色散到指数探针旋转的急剧转变表明速率交换发生在结构弛豫最慢时间常数的时间尺度上。在如此宽的频率范围内,未观察到环境波动与结构弛豫时间比的变化。

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