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confinement 对水的介电响应的影响延伸到介观尺度。

Effects of Confinement on the Dielectric Response of Water Extends up to Mesoscale Dimensions.

机构信息

School of Chemical Engineering, Integrated Material Design Centre (IMDC), University of New South Wales , Sydney, NSW 2033, Australia.

IBM Research Australia , 204 Lygon Street, Carlton, Victoria 3053, Australia.

出版信息

Langmuir. 2016 May 17;32(19):4765-73. doi: 10.1021/acs.langmuir.6b00791. Epub 2016 May 3.

Abstract

The extent of confinement effects on water is not clear in the literature. While some properties are affected only within a few nanometers from the wall surface, others are affected over long length scales, but the range is not clear. In this work, we have examined the dielectric response of confined water under the influence of external electric fields along with the dipolar fluctuations at equilibrium. The confinement induces a strong anisotropic effect which is evident up to 100 nm channel width, and may extend to macroscopic dimensions. The root-mean-square fluctuations of the total orientational dipole moment in the direction perpendicular to the surfaces is 1 order of magnitude smaller than the value attained in the parallel direction and is independent of the channel width. Consequently, the isotropic condition is unlikely to be recovered until the channel width reaches macroscopic dimensions. Consistent with dipole moment fluctuations, the effect of confinement on the dielectric response also persists up to channel widths considerably beyond 100 nm. When an electric field is applied in the perpendicular direction, the orientational relaxation is 3 orders of magnitude faster than the dipolar relaxation in the parallel direction and independent of temperature.

摘要

在文献中, confinement 效应对水的影响程度尚不清楚。虽然有些性质仅在距壁面几个纳米的范围内受到影响,但其他性质则在长程尺度上受到影响,但范围尚不清楚。在这项工作中,我们研究了在外部电场影响下受限水的介电响应以及平衡时的偶极子涨落。 confinement 会产生强烈的各向异性效应,在 100nm 通道宽度内即可明显看出,并且可能扩展到宏观尺寸。垂直于表面的总取向偶极矩的均方根涨落比在平行方向上的涨落小一个数量级,并且与通道宽度无关。因此,直到通道宽度达到宏观尺寸,各向同性条件才可能恢复。与偶极矩涨落一致,confinement 对介电响应的影响也一直持续到远超过 100nm 的通道宽度。当在垂直方向施加电场时,取向弛豫比平行方向的偶极弛豫快 3 个数量级,并且与温度无关。

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