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Mechanical and Dielectric Studies of Carrageenan Sols and Gels

机译:卡拉胶溶胶和凝胶的力学和介电研究

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摘要

The temperature dependence of the dynamic shear modulus, strain optical coefficient, DC conductivity, and complex dielectric spectrum of κ- and ι-carrageenan aqueous solutions with K, Ca, Cs, and Na were measured in order to clarify the formation process of the cross-linking region and the gel network structure. From the correlation analysis between the shear modulus and the strain optical coefficient, we found that the stress inducing unit orientation increases with decreasing temperature, which strongly suggests that the branching number in a cross-linking region increases with decreasing temperature, which depends on counterion species. In terms of the correlation parameters, an increasing scheme of the branching number depends on counterion species. Just below the coil-helix transition temperature, dielectric relaxation arises, with relaxation time ~100 μs and relaxation strength ~10~3. Dielectric relaxation can be assigned to the counterion fluctuation in the parallel direction to the helical axis. The fluctuation distance of the counterion estimated from the relaxation time increases sharply in the initial stage of gelation and gradually reaches a constant value. We concluded that the longitudinal length of the aggregated region increases sharply at the initial state of gelation while the number of helical molecules bundled in a cross-linking region increases successively with decreasing temperature.
机译:测量了具有K,Ca,Cs和Na的κ和η-卡拉胶水溶液的动态剪切模量,应变光学系数,DC电导率和复介电谱的温度依赖性,以阐明十字的形成过程-连接区域和凝胶网络结构。通过剪切模量和应变光学系数之间的相关分析,我们发现应力诱导单元的取向随温度降低而增加,这强烈表明交联区域中的支化数随温度降低而增加,这取决于抗衡离子的种类。就相关参数而言,支化数的增加方案取决于抗衡离子种类。刚好在线圈-螺旋转变温度以下,发生介电弛豫,弛豫时间约为100μs,弛豫强度约为10〜3。介电弛豫可以被分配给平行于螺旋轴方向的抗衡离子涨落。由弛豫时间估计的平衡离子的波动距离在凝胶化的初始阶段急剧增加,并逐渐达到恒定值。我们得出的结论是,聚集区域的纵向长度在凝胶化的初始状态急剧增加,而在交联区域中捆绑在一起的螺旋分子的数量则随着温度的降低而连续增加。

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