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水性体系的非平衡冻结行为

Non-equilibrium freezing behaviour of aqueous systems.

作者信息

MacKenzie A P

出版信息

Philos Trans R Soc Lond B Biol Sci. 1977 Mar 29;278(959):167-89. doi: 10.1098/rstb.1977.0036.

Abstract

The tendencies to non-equilibrium freezing behaviour commonly noted in representative aqueous systems derive from bulk and surface properties according to the circumstances. Supercooling and supersaturation are limited by heterogeneous nucleation in the presence of solid impurities. Homogeneous nucleation has been observed in aqueous systems freed from interfering solids. Once initiated, crystal growth is ofter slowed and, very frequently, terminated with increasing viscosity. Nor does ice first formed always succeed in assuming its most stable crystalline form. Many of the more significant measurements on a given systeatter permitting the simultaneous representation of thermodynamic and non-equilibrium properties. The diagram incorporated equilibrium melting points, heterogeneous nucleation temperatures, homogeneous nucleation temperatures, glass transition and devitrification temperatures, recrystallization temperatures, and, where appropriate, solute solubilities and eutectic temperatures. Taken together, the findings on modle systems aid the identification of the kinetic and thermodynamic factors responsible for the freezing-thawing survival of living cells.

摘要

在典型的水性体系中通常观察到的非平衡冷冻行为倾向,取决于具体情况的体相和表面性质。在存在固体杂质的情况下,过冷和过饱和受到异质成核的限制。在没有干扰固体的水性体系中已观察到均相成核。一旦开始,晶体生长通常会随着粘度增加而减慢,并且非常频繁地终止。最初形成的冰也并不总是能成功呈现其最稳定的晶体形式。在给定体系上进行的许多更重要的测量,使得能够同时呈现热力学和非平衡性质。该图表纳入了平衡熔点、异质成核温度、均相成核温度、玻璃化转变温度和失透温度、再结晶温度,以及在适当情况下的溶质溶解度和共晶温度。综合起来,关于模型体系的研究结果有助于确定负责活细胞冻融存活的动力学和热力学因素。

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