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锂皂石悬浮液中的多种非遍历无序状态:相图

Multiple nonergodic disordered states in Laponite suspensions: a phase diagram.

作者信息

Jabbari-Farouji S, Tanaka Hajime, Wegdam G H, Bonn Daniel

机构信息

Van der Waals-Zeeman Institute, University of Amsterdam, 1018XE Amsterdam, The Netherlands.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Dec;78(6 Pt 1):061405. doi: 10.1103/PhysRevE.78.061405. Epub 2008 Dec 23.

Abstract

We study the time evolution of different Laponite suspensions from a low-viscosity ergodic state to a viscoelastic nonergodic state over a wide range of volume fractions and salt contents. We find that the evolution of nonergodicity parameter (Debye-Waller factor) splits into two branches for all the samples, which correspond to two distinct dynamically arrested states. At moderately high salt concentrations, on the other hand, a third nonergodic state appears that is different from the above two nonergodic states. Measurement of the conductivity of Laponite solutions in pure water shows that the contribution of counterions in the ionic strength is considerable and their role should be taken into account in interpretations of aging dynamics and the phase diagram. Based on these data and available data in the literature, we propose a (nonequilibrium) phase diagram for Laponite suspensions.

摘要

我们研究了不同锂皂石悬浮液在很宽的体积分数和盐含量范围内从低粘度遍历态到粘弹性非遍历态的时间演化。我们发现,对于所有样品,非遍历性参数(德拜-瓦勒因子)的演化都分为两个分支,这对应于两种不同的动态停滞状态。另一方面,在适度高的盐浓度下,会出现第三种非遍历态,它不同于上述两种非遍历态。对纯水中锂皂石溶液电导率的测量表明,抗衡离子在离子强度中的贡献相当大,在解释老化动力学和相图时应考虑它们的作用。基于这些数据以及文献中的现有数据,我们提出了锂皂石悬浮液的(非平衡)相图。

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