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室温下水的电致液-液相转变

Electrically induced liquid-liquid phase transition in water at room temperature.

作者信息

Wexler Adam D, Fuchs Elmar C, Woisetschläger Jakob, Vitiello Giuseppe

机构信息

Arie Zwijnenburg Laboratory for Advanced Microscopy and Optical Metrology, Wetsus - European Center of Excellence for Sustainable Water Technology, Oostergoweg 9, 8911MA Leeuwarden, The Netherlands.

出版信息

Phys Chem Chem Phys. 2019 Aug 28;21(34):18541-18550. doi: 10.1039/c9cp03192h.

Abstract

In this work we expand on findings previously reported [Wexler et al., Phys. Chem. Chem. Phys., 2016, 18, 16281] on the experimental observation of a phase transition in a hydrogen bonded liquid manifesting in long range dipole-dipole interactions. The studied system, liquid water stressed by an electric field, exhibits collective oscillations brought about through spontaneous breakdown of symmetry. Raman spectroscopy identifies the primary excitation of the emergent phase as transverse optically active phonon-like sidebands that appear on the hydrogen bonded asymmetric stretch mode. The phase transition is observed throughout the entire volume of liquid. The system also exhibits a self-similarity relation between the scattered Raman intensity and the electric field strength which further supports the conclusion that collective behavior persists against thermal disruption. The experimental findings are discussed in terms of a quantum field theory for macroscopic quantum systems.

摘要

在这项工作中,我们拓展了先前报道的研究结果[韦克斯勒等人,《物理化学化学物理》,2016年,第18卷,第16281页],即关于氢键液体中相变的实验观测,该相变表现为长程偶极-偶极相互作用。所研究的系统是受电场作用的液态水,它表现出通过对称性自发破缺产生的集体振荡。拉曼光谱将出现的相的主要激发识别为出现在氢键不对称伸缩模式上的横向光学活性类声子边带。在整个液体体积中都观察到了相变。该系统还在散射拉曼强度与电场强度之间表现出自相似关系,这进一步支持了集体行为在热干扰下依然存在的结论。我们依据宏观量子系统的量子场论对实验结果进行了讨论。

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