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有效密度排列的软球沉积物。

Sediments of soft spheres arranged by effective density.

机构信息

The Pennsylvania State University, Department of Chemical Engineering, University Park, Pennsylvania 16802, USA.

出版信息

Nat Mater. 2011 Sep;10(9):716-21. doi: 10.1038/nmat3068.

Abstract

Colloidal sedimentation has been studied for decades from both thermodynamic and dynamic perspectives. In the present work, binary mixtures of colloidal spheres are observed to separate spontaneously into two distinct layers on sedimentation. Both layers have a high volume fraction and contain distinct compositions of particles. Although predicting these compositions using settling dynamics is challenging, here we show that the compositions are readily predicted thermodynamically by minimizing the gravitational energy of the system. As the random packing fraction of a mixture of spheres exceeds that of monodisperse spheres of either type, the mixture produces a denser suspension that forms the bottom phase. Experimentally, the use of charged particles and low-ionic-strength solutions provides interparticle repulsions that keep the packed particles mobile, avoiding a glassy state that would prevent particles from reaching their equilibrium configuration. We extend this work beyond binary systems, showing similar separated layers for a five-component mixture of particles.

摘要

胶态沉降已经从热力学和动力学两个角度进行了数十年的研究。在目前的工作中,观察到胶体球的二元混合物在沉降时自发地分离成两个不同的层。这两个层都具有较高的体积分数,并且包含不同的粒子组成。尽管使用沉降动力学来预测这些组成是具有挑战性的,但我们在这里表明,通过最小化系统的重力能,这些组成在热力学上很容易被预测。由于混合物中球的随机堆积分数超过了任何一种单分散球的堆积分数,因此混合物产生了更密集的悬浮液,形成了底部相。实验上,使用带电粒子和低离子强度溶液提供了粒子间的斥力,使填充的粒子保持可动性,避免了阻止粒子达到平衡状态的玻璃态。我们将这项工作扩展到二元系统之外,显示出对于五组分粒子混合物也具有类似的分离层。

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