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Structural study of supercritical water. III. Rotational dynamics

机译:超临界水的结构研究。三,旋转动力学

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The rotational dynamics of water in super- and subcritical conditions is investigated by measuring the spin-lattice relaxation time T-1 of heavy water (D2O). The experimentally determined T-1 is shown to be governed by the quadrupolar relaxation mechanism even in the supercritical conditions and to provide the second-order reorientational correlation time tau (2R) of the O-D axis of a single water molecule. It is then found that while tau (2R) decreases rapidly with the temperature on the liquid branch of the saturation curve, it remains on the order of several tens of femtoseconds when the density is varied up to twice the critical at a fixed supercritical temperature of 400 degreesC. The comparison of tau (2R) with the angular momentum correlation time shows that the rotational dynamics is not diffusive in supercritical water. The dependence of tau (2R) on the hydrogen bonding state is also examined in combination with molecular dynamics simulations, and the effect of the hydrogen bonding on the rotational dynamics in supercritical water is found to be weaker than but to be on the same order of magnitude as that in ambient water on the relative scale. Actually, although tau (2R) is divergent in the limit of zero density, it is observed to increase with the density when the density is above similar to1/3 of the critical. (C) 2001 American Institute of Physics. [References: 56]
机译:通过测量重水(D2O)的自旋晶格弛豫时间T-1,研究了超临界和亚临界条件下水的旋转动力学。实验确定的T-1即使在超临界条件下也受四极弛豫机制支配,并提供单个水分子O-D轴的二次方向相关时间tau(2R)。然后发现,虽然tau(2R)随着饱和度曲线的液体分支上的温度而迅速降低,但当密度在固定的超临界温度下变化至临界值的两倍时,它仍保持在数十飞秒的数量级。 400℃。 tau(2R)与角动量相关时间的比较表明,旋转动力学在超临界水中没有扩散性。还结合分子动力学模拟研究了tau(2R)对氢键状态的依赖性,发现氢键对超临界水中旋转动力学的影响弱于但处于相同的数量级。相对于周围水的大小。实际上,尽管tau(2R)在零密度的极限处发散,但是当密度高于临界值的1/3时,它会随密度的增加而增加。 (C)2001美国物理研究所。 [参考:56]

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