首页> 外文期刊>The Journal of Chemical Physics >Hydrogen bond network in the hydration layer of the water confined in nanotubes increasing the dielectric constant parallel along the nanotube axis
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Hydrogen bond network in the hydration layer of the water confined in nanotubes increasing the dielectric constant parallel along the nanotube axis

机译:限制在纳米管中的水的水合层中的氢键网络增加了沿纳米管轴平行的介电常数

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摘要

The water confined in nanotubes has been extensively studied, because of the potential usages in drug delivery and desalination. The radial distribution of the dielectric constant parallel along the nanotube axis was obtained by molecular dynamics simulations in a carbon nanotube and a nanotube with a very small van der Waals potential. The confined water was divided into two parts, the middle part water and the hydration water. In both cases, the hydrogen bond orientation of the middle water is isotropic, while the hydrogen bonds in hydration layers are apt to parallel along the nanotube axis. Therefore, the hydration water has higher dipole correlations increasing the dielectric constant along the nanotube axis. (C) 2015 AIP Publishing LLC.
机译:由于在药物递送和脱盐中的潜在用途,因此限制在纳米管中的水已得到广泛研究。通过分子动力学模拟,在碳纳米管和范德华势很小的纳米管中,获得了沿纳米管轴平行的介电常数的径向分布。将承压水分为两部分,中间部分水和水合水。在这两种情况下,中间水的氢键取向都是各向同性的,而水合层中的氢键则倾向于沿着纳米管轴平行。因此,水合水具有更高的偶极相关性,从而增加了沿着纳米管轴的介电常数。 (C)2015 AIP Publishing LLC。

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