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表面水化作用促使水分快速吸收入强亲水性纳米孔中。

Surface hydration drives rapid water imbibition into strongly hydrophilic nanopores.

作者信息

Fang Chao, Qiao Rui

机构信息

Department of Mechanical Engineering, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

Phys Chem Chem Phys. 2017 Aug 9;19(31):20506-20512. doi: 10.1039/c7cp02115a.

Abstract

The imbibition of liquids into nanopores plays a critical role in numerous applications, and most prior studies focused on imbibition due to capillary flows. Here we report molecular simulations of the imbibition of water into single mica nanopores filled with pressurized gas. We show that, while capillary flow is suppressed by the high gas pressure, water is imbibed into the nanopore through surface hydration in the form of monolayer liquid films. As the imbibition front moves, the water film behind it gradually densifies. Interestingly, the propagation of the imbibition front follows a simple diffusive scaling law. The effective diffusion coefficient of the imbibition front, however, is more than ten times larger than the diffusion coefficient of the water molecules in the water film adsorbed on the pore walls. We clarify the mechanism for the rapid water imbibition observed here.

摘要

液体渗入纳米孔在众多应用中起着关键作用,并且大多数先前的研究集中于由毛细流引起的渗入。在此,我们报告了水渗入充满加压气体的单个云母纳米孔的分子模拟。我们表明,虽然毛细流受到高气压的抑制,但水以单层液膜的形式通过表面水化作用渗入纳米孔。随着渗入前沿移动,其后方的水膜逐渐致密化。有趣的是,渗入前沿的传播遵循简单的扩散标度律。然而,渗入前沿的有效扩散系数比吸附在孔壁上的水膜中水分子的扩散系数大十多倍。我们阐明了此处观察到的快速水渗入的机制。

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