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关于荷电胶体板的相行为和动力学特征。

On phase behavior and dynamical signatures of charged colloidal platelets.

机构信息

LPTMS, CNRS and Université Paris-Sud, UMR8626, Bat. 100, 91405 Orsay, France.

Université Paris-Sud, Laboratoire de Physique Théorique, CNRS UMR 8627, Bâtiment 210, 91405 Orsay Cedex, France.

出版信息

Sci Rep. 2013 Dec 19;3:3559. doi: 10.1038/srep03559.

Abstract

Charged platelet suspensions, such as swelling clays, disc-like mineral crystallites or exfoliated nanosheets are ubiquitous in nature. Their phase behaviours are nevertheless still poorly understood: while some clay suspensions form arrested states at low densities, others exhibit an equilibrium isotropic-nematic transition at moderate densities. These observations raise fundamental questions about the influence of electrostatic interactions on the isotropic-nematic transition and the organisation of charged platelets. We investigate the competition between anisotropic excluded-volume and repulsive electrostatic interactions in suspensions of charged colloidal discs, by means of Monte-Carlo simulations and characterization of the dynamics of the structures. We show that the original intrinsic anisotropy of the electrostatic potential between charged platelets not only rationalizes generic features of the complex phase diagram of charged colloidal platelets such as Gibbsite and Beidellite clays, but also predicts the existence of novel structures. Furthermore, we find evidences of a strong slowing down of the dynamics upon increasing density.

摘要

带电荷的血小板悬浮液,如膨胀性粘土、盘状矿物微晶或剥落的纳米片,在自然界中无处不在。然而,它们的相行为仍未被很好地理解:虽然一些粘土悬浮液在低密度下形成停滞状态,而另一些在中等密度下表现出平衡各向同性-向列相转变。这些观察结果提出了关于静电相互作用对各向同性-向列相转变和带电荷血小板组织的影响的基本问题。我们通过蒙特卡罗模拟和结构动力学的特征化,研究了带电荷胶体盘悬浮液中各向异性排除体积和排斥静电相互作用之间的竞争。我们表明,带电荷血小板之间的静电势的原始固有各向异性不仅可以解释带电荷胶体血小板(如三水铝石和贝得石粘土)复杂相图的一般特征,而且还可以预测新结构的存在。此外,我们发现随着密度的增加,动力学明显减慢。

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