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首页> 外文期刊>The Journal of Chemical Physics >Observation of fragile-to-strong liquid transition in surface water in CeO_2
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Observation of fragile-to-strong liquid transition in surface water in CeO_2

机译:CeO_2中地表水从弱到强的液态转变的观察

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A quasielastic neutron-scattering experiment carried out on a backscattering spectrometer with sub-mueV resolution in the temperature range of 200-250 K has revealed the dynamics of surface water in cerium oxide on the time scale of hundreds of picoseconds.This slow dynamics is attributed to the translational mobility of the water molecules in contact with the surface hydroxyl groups.The relaxation function of this slow motion can be described by a slightly stretched exponential with the stretch factor exceeding 0.9,which indicates almost a Debye-type dynamics.Down to about 220 K,the temperature dependence of the residence time for water molecules follows a Vogel-Fulcher-Tamman law with the glass transition temperature of 181 K.At lower temperatures,the residence time behavior abruptly changes,indicating a fragile-to-strong liquid transition in surface water at about 215 K.
机译:在200-250 K的温度范围内在亚mueV分辨率的反向散射光谱仪上进行的准弹性中子散射实验揭示了氧化铈中地表水的动力学在数百皮秒的时间范围内。缓慢运动的松弛功能可以通过拉伸系数超过0.9的轻微拉伸指数来描述,这几乎表明了Debye型动力学。 220 K,水分子停留时间的温度依赖性遵循Vogel-Fulcher-Tamman定律,玻璃化转变温度为181 K.在较低温度下,停留时间行为突然改变,表明从弱到强的液体转变在约215 K的地表水中

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