Origin of the anomalous properties in supercooled water based on experimental probing inside “no-man's land”

Q1 Physics and Astronomy
Anders Nilsson
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引用次数: 13

Abstract

Austen Angell conducted pioneering work that opened up the field of supercooled water by observing the temperature dependent divergence of the thermodynamic response functions. Many different scenarios have been proposed as the origin of the anomalous properties and now it has become possible to test the various hypotheses in experimental studies of bulk supercooled water at conditions where ice crystallization becomes extremely rapid. Through the usage of x-ray lasers, ultrafast measurements could be conducted, as the sample is rapidly brought to the extreme conditions on time scales preceding ice formation. In particular the experimental observation of the existence of a liquid-liquid transition at positive pressure, one phase behavior at atmospheric conditions at temperatures down to 228 K, and the existence of maxima in several properties at 230 K indicative of a Widom line, are only consistent with the proposed liquid-liquid critical point model as the origin of the anomalous properties.

基于“无人区”内部实验探测的过冷水异常性质成因
奥斯汀·安吉尔(Austen Angell)通过观察热力学响应函数的温度相关发散度,开创了过冷水领域的先河。人们提出了许多不同的假设作为异常性质的起源,现在已经有可能在冰结晶变得非常迅速的条件下对散装过冷水的实验研究中检验各种假设。通过使用x射线激光,可以进行超快测量,因为样品在形成冰之前的时间尺度上迅速达到极端条件。特别是在正压下存在液-液转变的实验观察,温度低至228 K的大气条件下的一相行为,以及在230 K下存在的一些属性的最大值,表明了一条智慧线,这些都只与提出的液-液临界点模型一致,作为异常性质的起源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Non-Crystalline Solids: X
Journal of Non-Crystalline Solids: X Materials Science-Materials Chemistry
CiteScore
3.20
自引率
0.00%
发文量
50
审稿时长
76 days
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