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云母表面之间纳米受限的水化层的流动性。

Fluidity of hydration layers nanoconfined between mica surfaces.

作者信息

Leng Yongsheng, Cummings Peter T

机构信息

Department of Chemical Engineering, Vanderbilt University, Nashville, Tennessee 37235, USA.

出版信息

Phys Rev Lett. 2005 Jan 21;94(2):026101. doi: 10.1103/PhysRevLett.94.026101. Epub 2005 Jan 19.

Abstract

We perform molecular dynamics simulations to investigate the shear dynamics of hydration water nanoconfined between two mica surfaces at 1 bar pressure and 298 K. Newtonian plateaus of shear viscosity comparable to the bulk value for different hydration layers D=0.92-2.44 nm are obtained. The origin of this persistent fluidity of the confined aqueous system is found to be closely associated with the rotational dynamics of water molecules, accompanied by fast translational diffusion under this confinement.

摘要

我们进行分子动力学模拟,以研究在1巴压力和298 K温度下,限制在两个云母表面之间的水化水纳米层的剪切动力学。对于不同水化层厚度D = 0.92 - 2.44纳米,获得了与本体值相当的剪切粘度牛顿平台。发现这种受限水体系持续流动性的起源与水分子的旋转动力学密切相关,并且在这种限制条件下伴随着快速的平动扩散。

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