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纳米受限水中毛细管润湿性、质量与动量传递之间的关系:以石墨和六方氮化硼纳米狭缝中的水为例。

Relationship between Capillary Wettability, Mass, and Momentum Transfer in Nanoconfined Water: The Case of Water in Nanoslits of Graphite and Hexagonal Boron Nitride.

作者信息

Smith Lois, Wei Zixuan, Williams Christopher D, Chiricotto Mara, Pereira da Fonte Claudio, Carbone Paola

机构信息

Department of Chemistry, University of Manchester, Oxford Road, M13 9PL Manchester, U.K.

Department of Chemical Engineering, University of Manchester, Oxford Road, M13 9PL Manchester, U.K.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 8;16(41):56316-24. doi: 10.1021/acsami.4c10738.

Abstract

The flow of water confined in nanosize capillaries is subject of intense research due to its relevance in the fabrication of nanofluidic devices and in the development of theories for fluid transport in porous media. Here, using molecular dynamics simulations carried out on 2D capillaries made up of graphite, hexagonal boron nitride (hBN) and a mix of the two, and of sizes from subnanometer to few nanometers, we investigate the relationship between the wettability of the wall capillary, the water diffusion, and its flow rate. We find that the water diffusion is decoupled from its flow properties as the former is not affected either by the height or chemistry of the capillary (except for the subnanometer slits), while the latter is dependent on both. The capillaries containing hBN show a reduced flow rate compared to those that are purely graphitic, likely due to the high friction coefficient between water and hBN. Such resistance to the flow is, however, at its maximum in the smallest capillary and lower for larger ones. Finally, we show that the flow rate values obtained from the Hagen-Poiseuille theory are almost always smaller than those obtained from simulations, indicating that either the slip length or the viscosity of nanoconfined water could be substantially different from the bulk values.

摘要

由于其在纳米流体装置制造以及多孔介质中流体传输理论发展方面的相关性,受限在纳米尺寸毛细管中的水流成为了深入研究的对象。在此,我们通过对由石墨、六方氮化硼(hBN)以及二者混合物构成的二维毛细管进行分子动力学模拟,这些毛细管尺寸从亚纳米到几纳米不等,来研究毛细管壁的润湿性、水的扩散及其流速之间的关系。我们发现水的扩散与其流动特性解耦,因为前者不受毛细管高度或化学性质的影响(亚纳米狭缝情况除外),而后者则取决于两者。与纯石墨毛细管相比,含有hBN的毛细管流速降低,这可能是由于水与hBN之间的高摩擦系数所致。然而,这种对流动的阻力在最小的毛细管中最大,而在较大的毛细管中则较小。最后,我们表明从哈根 - 泊肃叶理论获得的流速值几乎总是小于从模拟中获得的值,这表明纳米受限水的滑移长度或粘度可能与体相值有很大不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73d9/11492258/12dd89a560ab/am4c10738_0001.jpg

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