Nanoscale Structural Phase Transitions in Aqueous Solutions of Organic Molecules

IF 1.9 Q3 PHYSICS, CONDENSED MATTER
N. Bunkin, L. Sabirov, D. Semenov, F. Ismailov, M. Khasanov
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引用次数: 0

Abstract

Adiabatic compressibility βS of the 4-methylpyridine + water solution is investigated in a wide concentration and temperature variation interval using Mandelstam–Brillouin scattering spectroscopy. The adiabatic compressibility minimum caused by the microinhomogeneous structure of the solution is experimentally established at the concentration of 0.06 molar fractions of 4-methylpyridine in the solution. The results of the investigations allow the construction of a diagram of possible states caused by a continuous three-dimensional hydrogen bond network of water. The results of experimental study of the excessive hypersound absorption in acetone + water and 3-methylpyridine + water solutions are discussed based on the conclusions of the theory of high-frequency sound scattering near the critical point (developed by Chaban) and the Landau theory. These results are described within the framework of the Landau and Chaban theories and explained by the existence of two different states with minimum thermodynamic stability in the solution.
有机分子水溶液中的纳米级结构相变
用曼德尔斯塔姆-布里渊散射光谱法研究了4-甲基吡啶+水溶液在较宽浓度和温度变化区间内的绝热压缩率βS。在溶液中4-甲基吡啶浓度为0.06摩尔分数时,实验确定了由溶液微非均质结构引起的绝热可压缩性最小值。研究结果允许构建一个由连续的三维水氢键网络引起的可能状态的图表。根据Chaban提出的临界点附近高频声散射理论和朗道理论的结论,讨论了丙酮+水和3-甲基吡啶+水溶液中超声吸收的实验研究结果。这些结果是在朗道和查班理论的框架内描述的,并通过溶液中存在两种具有最小热力学稳定性的不同状态来解释。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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