首页> 外文期刊>The Journal of Chemical Physics >Effect of pressure on thermal conductivity and pressure collapse of ice in a polymer-hydrogel and kinetic unfreezing at 1 GPa
【24h】

Effect of pressure on thermal conductivity and pressure collapse of ice in a polymer-hydrogel and kinetic unfreezing at 1 GPa

机译:压力对聚合物水凝胶中冰的热导率和压力崩溃以及1 GPa时的动力学解冻的影响

获取原文
获取原文并翻译 | 示例
           

摘要

We report a study of aqueous solutions of poly(vinylalcohol) and its hydrogel by thermal conductivity, and specific heat measurements. In particular, we investigate (i) the changes in the solution and the hydrogel at 0.1 MPa observed in the 350-90 K range and of the frozen hydrogel at 130 K observed in the range from 0.1 MPa to 1.3 GPa, and (ii) the nature of the pressure collapse of ice in the frozen hydrogel and kinetic unfreezing on heating of its high density water at 1 GPa. The water component of the polymer solution on cooling either first phase separates and then freezes to hexagonal ice or freezes without phase separation and the dispersed polymer chains freeze-concentrate in nanoscopic and microscopic regions of the grain boundaries and grain junctions of the ice crystals in the frozen state of water in the hydrogel. The change in with temperature at 1 bar is reversible with some hysteresis, but not reversible with pressure after compression to 0.8 GPa at 130 K. At high pressures the crystallized state collapses showing features of and specific heat characteristic of formation of high density amorphous solid water. The pressure of structural collapse is 0.08 GPa higher than that of ice at 130 K. The slowly formed collapsed state shows kinetic unfreezing or glass-liquid transition temperature at 140 K for a time scale of 1 s. Comparison with the change in the properties observed for ice shows that decreases when the polymer is added.
机译:我们通过热导率和比热测量报告了聚乙烯醇及其水凝胶水溶液的研究。特别是,我们研究(i)在350-90 K范围内观察到的溶液和水凝胶在0.1 MPa下的变化以及在0.1 MPa至1.3 GPa范围内观察到的在130 K下的冷冻水凝胶的变化,以及(ii)冻结水凝胶中冰的压力坍塌的性质以及在1 GPa加热高密度水时的动力学解冻。冷却后的聚合物溶液中的水成分首先相分离,然后冻结成六方冰,或冻结而没有相分离,并且分散的聚合物链在纳米晶和微观区域的晶界和冰晶的晶界处冻结浓缩。水在水凝胶中处于冻结状态。 1 bar的温度变化在一定的滞后是可逆的,但在130 K下压缩至0.8 GPa后的压力则不可逆。在高压下,结晶态塌陷,显示出高密度非晶态固体水形成的特征和比热特性。结构塌陷的压力比130 K时的冰高0.08 GPa。缓慢形成的塌陷状态在1 s的时间范围内显示出动态解冻或140 K下的玻璃-液体转变温度。与观察到的冰的性质变化的比较表明,当添加聚合物时,其减少。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号