超临界性、玻璃态动力学以及亚麻籽油熔融/冷冻不连续转变的新发现

A. Drozd-Rzoska, S. Rzoska, J. Łoś
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引用次数: 0

摘要

亚麻籽油的介电常数发生了长程超临界变化,这种变化类似于在液晶化合物的各向同性液相中观察到的变化。这种 "超临界性 "可能是亚麻籽油具有独特保健特性的另一个因素。宽带介电光谱研究也揭示了弛豫时间的 "玻璃化 "变化,最近引入的 "活化和临界 "方程很好地描绘了这一变化。在固相中,检测到了卡农式熔化/冷冻不连续转变所特有的预熔化效应,即在液相中没有任何预转变效应。它在晶粒模型中得到了解释,并可以利用利波夫斯基模型和 "反向 "莫索蒂灾难概念对其进行参数化。对于固态中的预熔化效应,奇异的 "临界 "温度与块体的不连续熔化和冻结温度相关。因此,报告显示,尽管亚麻籽油的起源 "天然而复杂",但它可以被视为两个基本问题的独特模型系统:(i) 与弱不连续相变相关的液态预过渡(超临界)效应,以及 (ii) 不连续熔化/冻结不连续相变固态侧的预熔化行为。
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Supercriticality, Glassy Dynamics, and the New Insight into Melting/Freezing Discontinuous Transition in Linseed Oil
The long-range supercritical changes of dielectric constant, resembling ones observed in the isotropic liquid phase of liquid crystalline compounds, are evidenced for linseed oil—although in the given case, the phenomenon is associated with the liquid–solid melting/freezing discontinuous phase transitions. This ‘supercriticality’ can be an additional factor supporting the unique pro-health properties of linseed oil. Broadband dielectric spectroscopy studies also revealed the ‘glassy’ changes of relaxation times, well portrayed by the ‘activated and critical’ equation recently introduced. In the solid phase, the premelting effect characteristic for the canonic melting/freezing discontinuous transition, i.e., without any pretransitional effect in the liquid phase, has been detected. It is interpreted within the grain model, and its parameterization is possible using the Lipovsky model and the ‘reversed’ Mossotti catastrophe concept. For the premelting effect in the solid state, the singular ‘critical’ temperature correlates with the bulk discontinuous melting and freezing temperatures. Consequently, the report shows that linseed oil, despite its ‘natural and complex’ origins, can be considered a unique model system for two fundamental problems: (i) pretransitional (supercritical) effects in the liquid state associated with a weakly discontinuous phase transition, and (ii) the premelting behavior in the solid side of the discontinuous melting/freezing discontinuous transition.
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