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带相反电荷胶体悬浮液中的凝胶形成:机制及其与平衡相图的关系

Gel formation in suspensions of oppositely charged colloids: mechanism and relation to the equilibrium phase diagram.

作者信息

Sanz Eduardo, Leunissen Mirjam E, Fortini Andrea, van Blaaderen Alfons, Dijkstra Marjolein

机构信息

Soft Condensed Matter, Debye Institute for NanoMaterials Science, Utrecht University, Princetonplein 5, 3584 CC Utrecht, The Netherlands.

出版信息

J Phys Chem B. 2008 Sep 4;112(35):10861-72. doi: 10.1021/jp801440v. Epub 2008 Aug 8.

Abstract

We study gel formation in a mixture of equally-sized oppositely charged colloids both experimentally and by means of computer simulations. Both the experiments and the simulations show that the mechanism by which a gel is formed from a dilute, homogeneous suspension is an interrupted gas-liquid phase separation. Furthermore, we use Brownian dynamics simulations to study the relation between gel formation and the equilibrium phase diagram. We find that, regardless of the interaction range, an interrupted liquid-gas phase separation is observed as the system is quenched into a state point where the gas-liquid separation is metastable. The structure of the gel formed in our experiments compares well with that of a simulated gel, indicating that gravity has only a minor influence on the local structure of this type of gel. This is supported by the experimental evidence that gels squeezed or stretched by gravity have similar structures, as well as by the fact that gels do not collapse as readily as in the case of colloid-polymer mixtures. Finally, we check whether or not crystallites are formed in the gel branches; we find crystalline domains for the longer ranged interactions and for moderate quenches to the metastable gas-liquid spinodal regime.

摘要

我们通过实验以及计算机模拟研究了等尺寸带相反电荷的胶体混合物中的凝胶形成过程。实验和模拟均表明,由稀的均匀悬浮液形成凝胶的机制是一种中断的气-液相分离。此外,我们使用布朗动力学模拟来研究凝胶形成与平衡相图之间的关系。我们发现,无论相互作用范围如何,当系统被猝灭到气-液分离为亚稳的状态点时,都会观察到中断的液-气相分离。我们实验中形成的凝胶结构与模拟凝胶的结构比较吻合,这表明重力对这类凝胶的局部结构影响较小。重力挤压或拉伸的凝胶具有相似结构这一实验证据,以及凝胶不像胶体-聚合物混合物那样容易坍塌这一事实,都支持了这一点。最后,我们检查凝胶分支中是否形成微晶;我们发现对于长程相互作用以及向亚稳气-液旋节线区域的适度猝灭,会形成结晶区域。

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