Einstein's osmotic equilibrium of colloidal suspensions in conservative force fields

Jinxin Fu, H. Ou-yang
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引用次数: 2

Abstract

Predicted by Einstein in his 1905 paper on Brownian motion, colloidal particles in suspension reach osmotic equilibrium under gravity. The idea was demonstrated by J.B. Perrin to win Nobel Prize in Physics in 1926. We show Einstein’s equation for osmotic equilibrium can be applied to colloids in a conservative force field generated by optical gradient forces. We measure the osmotic equation of state of 100nm Polystyrene latex particles in the presence of KCl salt and PEG polymer. We also obtain the osmotic compressibility, which is important for determining colloidal stability and the internal chemical potential, which is useful for predicting the phase transition of colloidal systems. This generalization allows for the use of any conservative force fields for systems ranging from colloidal systems to macromolecular solutions.
爱因斯坦在保守力场中胶体悬浮液的渗透平衡
爱因斯坦在1905年关于布朗运动的论文中预言,悬浮液中的胶体粒子在重力作用下达到渗透平衡。J.B.佩兰证明了这一观点,并于1926年获得诺贝尔物理学奖。我们证明爱因斯坦的渗透平衡方程可以应用于光梯度力产生的保守力场中的胶体。测定了100nm聚苯乙烯乳胶颗粒在KCl盐和PEG聚合物存在下的渗透状态方程。我们还得到了渗透可压缩性,这是测定胶体稳定性和内部化学势的重要指标,对预测胶体体系的相变具有重要意义。这种推广允许使用任何保守力场系统,从胶体系统到大分子溶液。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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