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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Linking phase behavior and reversible colloidal aggregation at low concentrations: Simulations and stochastic mean field theory
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Linking phase behavior and reversible colloidal aggregation at low concentrations: Simulations and stochastic mean field theory

机译:在低浓度下连接相行为和可逆胶体聚集:模拟和随机平均场理论

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摘要

We have studied the link between the kinetics of clustering and the phase behavior of dilute colloids with short range attractions of moderate strength. This was done by means of computer simulations and a theoretical kinetic model originally developed to deal with reversible colloidal aggregation. Three different regions of the phase diagram were accessed. For weak attractions, a gas phase of small clusters in equilibrium forms in the system. For intermediate attractions, the system undergoes liquid-gas separation, which is signatured by the formation of a few large droplike aggregates, a gas phase of small clusters, and an overall kinetics where a few seeds succeed in explosively growing at long times, after a lag time. Finally, for very strong attractions, fractal unbreakable clusters form and grow following DLCA-like (diffusion limited cluster aggregation) kinetics; liquid-gas separation is prevented by the strength of the bonds, which do not allow restructuration. Good qualitative and quantitative agreement is found between the dynamic simulations and the kinetic model in all the three regions.
机译:我们研究了具有中等强度的短程吸引力的稀胶体的聚集动力学与相行为之间的联系。这是通过计算机模拟和最初开发来处理可逆胶体聚集的理论动力学模型完成的。访问了相图的三个不同区域。对于弱吸引力,系统中会以平衡形式形成小团簇的气相。对于中间吸引力,该系统进行液-气分离,其特征在于形成了一些大的滴状聚集体,气相的小团簇以及整体动力学,其中一些种子在经过一定的时间后成功地爆炸性地生长。时差。最后,对于非常强的吸引力,分形坚不可摧的团簇会按照DLCA类(扩散受限的团簇聚集)动力学而形成并增长。通过不允许重组的键的强度来防止液-气分离。在所有三个区域的动力学仿真和动力学模型之间找到了良好的定性和定量一致性。

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