首页> 外文期刊>European Polymer Journal >Cryostructuring of polymeric systems. 36. Poly(vinyl alcohol) cryogels prepared from solutions of the polymer in water/low-molecular alcohol mixtures
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Cryostructuring of polymeric systems. 36. Poly(vinyl alcohol) cryogels prepared from solutions of the polymer in water/low-molecular alcohol mixtures

机译:聚合物系统的低温结构化。 36.由聚合物在水/低分子醇混合物中的溶液制备的聚乙烯醇冰冻剂

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Poly(vinyl alcohol) (PVA) cryogels are formed via freezing-storing frozen-thawing of concentrated solutions of the polymer. In this study the influence of the additives of the first four members of the series of aliphatic low-molecular alcohols to the initial aqueous PVA solution on the physicomechanical and thermal properties of the resulting cryogels has been explored. Addition of increasing amounts of methanol, ethanol and n-propanol were shown to cause a decrease in both the rigidity and the fusion temperature of the respective cryogels, and in the case of n-butanol additives the dependence of gel strength vs. alcohol concentration turned out to be bell-shaped. It was supposed that one of the basic reasons for such 'deteriorative' effects was the microcoagulation of PVA caused by growing concentration of the low-molecular alcohol in the unfrozen liquid microphase upon the ice crystallization. This assumption was confirmed in the optical microscopy experiments that revealed the formation of PVA microcoagulation zones entrapped in the macroporous cryogel bulk. Such an effect was previously unknown for PVA cryogels. The morphometric analysis(using specially developed algorithms) of the microscopic images of thin sections of such cryogels showed a sophisticated, without obvious direct correlations, pattern of properties- structure dependencies of such heterogeneous cryogels prepared from the solutions of the polymer in water/low-molecular alcohol mixtures.
机译:聚乙烯醇(PVA)冷冻凝胶是通过将聚合物的浓溶液冷冻储存并冻融而形成的。在这项研究中,已探索了脂族低分子醇系列的前四个成员的添加剂对初始PVA水溶液的影响,对所得冰晶的物理机械和热学性能产生了影响。结果表明,增加甲醇,乙醇和正丙醇的添加量会导致相应冰晶凝胶的刚度和熔融温度降低,而在使用正丁醇添加剂的情况下,凝胶强度与酒精浓度之间的关系会发生变化。呈钟形。据认为,这种“恶化”作用的基本原因之一是由于冰结晶时未冻结的液体微相中低分子醇浓度的增加引起的PVA的微凝结。该假设在光学显微镜实验中得到了证实,该实验揭示了大孔冷冻凝胶体中截留的PVA微凝区的形成。对于PVA冷冻凝胶,这种作用以前是未知的。对此类冰晶石的薄切片的显微图像进行形态计量学分析(使用专门开发的算法)显示,这种复杂的,没有明显的直接相关性的,由聚合物在水/低沸点溶液中制备的非均质冰晶的性质-结构依赖性模式。分子醇混合物。

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