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Microstructure local dynamics and flow behavior of colloidal suspensions with weak attractive interactions

机译:具有弱吸引力的胶体悬浮液的微观结构局部动力学和流动行为

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摘要

We present a comprehensive micro- and macrorheological study of the effect of weak depletion attraction (Ψdep ≈ 1–10 kBT) on dense colloidal suspensions stabilized by short-range repulsive interactions. We used aqueous polymer dispersions as model system and demonstrated the unique capabilities of multiple particle tracking (MPT) to disclose structural changes in such technically important systems exhibiting many characteristic features of hard sphere systems. Below the hard sphere freezing point ϕc, viscosity increases monotonically with increasing Ψdep due to the transition from a fluid to a fluid/crystalline and finally to a gel state. Above ϕc, increasing attraction strength first results in a viscosity reduction corresponding to the formation of large, permeable crystals and then in a viscosity increase when a network of dense, small crystals forms. The fraction of the fluid and crystal phase, particle concentration in each phase as well as the modulus of the micro-crystals are obtained, the latter decreases with Ψdep. Above the colloidal glass transition strong heterogeneities and different local particle mobility in the repulsive and attractive arrested states are found. Particles are trapped in the cage of neighboring particles rather than in an attractive potential well. The intermediate ergodic state exhibits uniform tracer diffusivity.
机译:我们对弱耗竭吸引力(Ψdep≈≈1-10–kBT)对通过短程排斥相互作用稳定的致密胶体悬浮液的影响进行了全面的微观和宏观流变研究。我们使用聚合物水分散体作为模型系统,并展示了多粒子跟踪(MPT)的独特功能,以揭示这种技术上重要的系统的结构变化,这些系统具有硬球系统的许多特征。低于硬球凝固点ϕc,由于从流体到流体/晶体的转变,最终到凝胶态,粘度随Ψdep的增加而单调增加。高于ϕc时,增加吸引力会首先导致粘度降低,这对应于形成大的可渗透晶体,然后在形成致密的小晶体网络时导致粘度增加。获得了流体相和晶相的分数,各相中的颗粒浓度以及微晶的模量,后者随Ψdep减小。在胶态玻璃化转变之上,发现了在排斥和吸引停滞状态下的强异质性和不同的局部粒子迁移率。粒子被捕获在相邻粒子的笼子中,而不是被吸引到潜在的势阱中。中间遍历状态表现出均匀的示踪扩散性。

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