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水溶液中液-液相变的一般性质。

General nature of liquid-liquid transition in aqueous organic solutions.

机构信息

Institute of Industrial Science, University of Tokyo, 4-6-1 Komaba, Meguro-ku, Tokyo 153-8505, Japan.

出版信息

Nat Commun. 2013;4:2844. doi: 10.1038/ncomms3844.

Abstract

The presence or absence of a liquid-liquid transition in water is one of the hot topics in liquid science, and while a liquid-liquid transition in water/glycerol mixtures is known, its generality in aqueous solutions has remained elusive. Here we reveal that 14 aqueous solutions of sugar and polyol molecules, which have an ability to form hydrogen bonding with water molecules, exhibit liquid-liquid transitions. We find evidence that both melting of ice and liquid-liquid transitions in all these aqueous solutions are controlled solely by water activity, which is related to the difference in the chemical potential between an aqueous solution and pure water at the same temperature and pressure. Our theory shows that water activity is determined by the degree of local tetrahedral ordering, indicating that both phenomena are driven by structural ordering towards ice-like local structures. This has a significant implication on our understanding of the low-temperature behaviour of water.

摘要

在液态科学中,水是否存在液-液相变是一个热门话题。虽然已知水/甘油混合物中有液-液相变,但在水溶液中其普遍性仍难以捉摸。在这里,我们揭示了 14 种具有与水分子形成氢键能力的糖和多元醇分子的水溶液存在液-液相变。我们发现的证据表明,所有这些水溶液中的冰的熔融和液-液相变都仅由水活度控制,水活度与在相同温度和压力下水溶液和纯水之间的化学势差有关。我们的理论表明,水活度由局部四面体形有序度决定,这表明这两种现象都是由向冰状局部结构的结构有序化驱动的。这对我们理解水的低温行为有重要意义。

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