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Hydrodynamics in bridging and aggregation of two colloidal particles in a near-critical binary mixture.

机译:在接近临界的二元混合物中两个胶体颗粒的桥接和聚集中的流体力学。

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摘要

We investigate bridging and aggregation of two colloidal particles in a near-critical binary mixture when the fluid far from the particles is outside the coexistence (CX) curve and is rich in the component disfavored by the colloid surfaces. In such situations, the adsorption-induced interaction is enhanced, leading to bridging and aggregation of the particles. We realize bridging firstly by changing the temperature with a fixed interparticle separation and secondly by letting the two particles aggregate. The interparticle attractive force dramatically increases upon bridging. The dynamics is governed by hydrodynamic flow around the colloid surfaces. In aggregation, the adsorption layers move with the particles and squeezing occurs at narrow separation. These results suggest relevance of bridging in the reversible colloid aggregation observed so far. We use the local functional theory [J. Chem. Phys., 2012, 136, 114704] to take into account the renormalization effect and the simulation method [Phys. Rev. Lett., 2000, 85, 1338] to calculate the hydrodynamic flow around the colloidal particles.
机译:当远离粒子的流体在共存(CX)曲线之外并且富含胶体表面不利的组分时,我们研究了近临界二元混合物中两个胶体粒子的桥接和聚集。在这种情况下,吸附诱导的相互作用增强,导致颗粒的桥接和聚集。我们首先通过以固定的颗粒间间距改变温度,然后通过使两个颗粒聚集来实现桥接。桥接时,粒子间吸引力显着增加。动力学由胶体表面周围的流体动力学流动控制。在聚集中,吸附层与颗粒一起移动,并且在狭窄的分离处发生挤压。这些结果表明,迄今为止在可逆胶体聚集中架桥的相关性。我们使用局部功能理论[J.化学Phys。,2012,136,114704],考虑了重归一化效果和模拟方法[Phys。Phys。,2012,136,114704]。 Rev. Lett。,2000,85,1338]计算胶体颗粒周围的流体动力流。

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