首页> 外文会议>Symposium on Structure and Dynamics of Glasses and Glass Formers held December 2-6, 1996,Boston, Massachusetts,U.S.A >Rotational dynamics of a molecular probe in tri-cresyl phosphate: from 'stick' to 'slip' boundary conditions
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Rotational dynamics of a molecular probe in tri-cresyl phosphate: from 'stick' to 'slip' boundary conditions

机译:磷酸三甲苯酯中分子探针的旋转动力学:从“粘”到“滑”边界条件

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摘要

The rotational dynamics of a molecular probe dissolved in the glass-former tri-cresyl phospate has been studied by linear and non-linear electron Spin Resonance spectroscopy. At the highest temperatures the Debye-Stokes-Einstein (DSE) law with stick boundary conditions holds. On cooling, a transition region is crossed and then a new regime sets in which is accounted for by the DSE law provided that slip boundary conditions are assumed. At the lowest temperatures the rotational diffusion and the shear viscosity are decoupled. The onset of the decoupling takes place close to T_c, the critical temperature predicted by the Mode Coupling Theory.
机译:通过线性和非线性电子自旋共振光谱研究了溶解在玻璃形成剂三甲苯基磷酸酯中的分子探针的旋转动力学。在最高温度下,具有棒边界条件的Debye-Stokes-Einstein(DSE)定律成立。冷却时,越过过渡区域,然后设置新的制度,如果假设滑移边界条件,则由DSE法解决。在最低温度下,旋转扩散和剪切粘度解耦。去耦的开始时间接近T_c,即模式耦合理论所预测的临界温度。

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