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低于水的冰点温度下的聚(乙烯基甲基醚)水凝胶——水分子相互作用和水的状态

Poly(vinyl methyl ether) hydrogels at temperatures below the freezing point of water-molecular interactions and states of water.

作者信息

Pastorczak Marcin, Dominguez-Espinosa Gustavo, Okrasa Lidia, Pyda Marek, Kozanecki Marcin, Kadlubowski Slawomir, Rosiak Janusz M, Ulanski Jacek

机构信息

Department of Molecular Physics, Lodz University of Technology, Zeromskiego 116, 90-924 Lodz, Poland ; Institute of Experimental Physics, University of Warsaw, Hoza 69, 00-681 Warsaw, Poland.

Department of Molecular Physics, Lodz University of Technology, Zeromskiego 116, 90-924 Lodz, Poland ; Technological Lab of Uruguay (LATU), 6201 Av. Italia, 11500 Montevideo, Uruguay.

出版信息

Colloid Polym Sci. 2014;292(8):1775-1784. doi: 10.1007/s00396-014-3283-z. Epub 2014 Jun 18.

Abstract

Water interacting with a polymer reveals a number of properties very different to bulk water. These interactions lead to the redistribution of hydrogen bonds in water. It results in modification of thermodynamic properties of water and the molecular dynamics of water. That kind of water is particularly well observable at temperatures below the freezing point of water, when the bulk water crystallizes. In this work, we determine the amount of water bound to the polymer and of the so-called pre-melting water in poly(vinyl methyl ether) hydrogels with the use of Raman spectroscopy, dielectric spectroscopy, and calorimetry. This analysis allows us to compare various physical properties of the bulk and the pre-melting water. We also postulate the molecular mechanism responsible for the pre-melting of part of water in poly(vinyl methyl ether) hydrogels. We suggest that above -60 °C, the first segmental motions of the polymer chain are activated, which trigger the process of the pre-melting.

摘要

与聚合物相互作用的水展现出许多与体相水截然不同的性质。这些相互作用导致水中氢键的重新分布。这会引起水的热力学性质以及水分子动力学的改变。当体相水结晶时,这类水在低于水的冰点的温度下尤为明显。在这项工作中,我们利用拉曼光谱、介电光谱和量热法测定了聚(乙烯基甲基醚)水凝胶中与聚合物结合的水量以及所谓的预熔水的量。这种分析使我们能够比较体相水和预熔水的各种物理性质。我们还假定了聚(乙烯基甲基醚)水凝胶中部分水预熔的分子机制。我们认为,在高于 -60°C时,聚合物链的首次链段运动被激活,从而引发预熔过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7267/4115186/f93707a8353c/396_2014_3283_Fig1_HTML.jpg

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