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首页> 外文期刊>The Journal of Chemical Physics >Gel dynamics in the mixture of low and high viscosity solvents: Re-entrant volume change induced by dynamical asymmetry
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Gel dynamics in the mixture of low and high viscosity solvents: Re-entrant volume change induced by dynamical asymmetry

机译:低粘度溶剂和高粘度溶剂混合物中的凝胶动力学:通过动态不对称诱导的再参赛体积变化

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摘要

When a gel swollen with a certain solvent is placed in the bath of another solvent, the gel swells or de-swells depending on the thermodynamic affinity to the gel. Toyotama et al. [Langmuir 22, 1952 (2006)] reported an unusual volume change of chemical gels that cannot be explained by the affinity difference: when a chemical gel saturated with water is immersed in ethylene glycol (EG), although those solvents have almost the same affinity to the polymer, the gel first shrinks and then re-swells and finally takes the same equilibrium volume as the initial. The re-entrant swelling was attributed to different diffusion rates between water and EG (dynamical asymmetry), but the detailed mechanism was not clarified. In this paper, we experimentally show that the characteristic times for the temporal shrinking and subsequent volume relaxation are proportional to the squared system size. This indicates that the phenomenon is governed by diffusive dynamics. According to this observation, we propose a coupled diffusion model explaining the physical mechanism of the re-entrant volume change.
机译:当用一定溶剂溶胀的凝胶溶于另一种溶剂的浴中时,凝胶根据凝胶的热力学亲和力溶胀或脱溶。丰田等人。 [Langmuir 22,1952(2006)]报道了化学凝胶的异常体积变化不能通过亲和力差异解释:当用水饱和的化学凝胶浸入乙二醇中时,尽管这些溶剂几乎具有相同的亲和力对于聚合物,凝胶首先收缩,然后再溶胀,最后将相同的平衡体积与初始相同。再参赛剂溶胀归因于水和例如(动态不对称)之间的不同扩散速率,但不澄清详细机制。在本文中,我们通过实验表明时间收缩和随后的体积松弛的特征时间与平方系统尺寸成比例。这表明该现象由扩散动力学控制。根据该观察,我们提出了一种耦合扩散模型,解释了再参赛体体积变化的物理机制。

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