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首页> 外文期刊>The European physical journal, E. Soft matter >Kinetic arrest in polyion-induced inhomogeneously charged colloidal particle aggregation
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Kinetic arrest in polyion-induced inhomogeneously charged colloidal particle aggregation

机译:聚离子诱导的不均匀带电胶体粒子聚集的动力学停滞

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摘要

Polymer chains adsorbed onto oppositely charged colloidal particles can significantly modify the particle-particle interactions. For sufficient amounts of added polymers, the original electrostatic repulsion can even turn into an effective attraction and relatively large aggregates can form. The attractive interaction contribution between two particles arises from the correlated adsorption of polyions at the oppositely charged particle surfaces, resulting in a non-homogeneous surface charge distribution. Here, we investigate the aggregation kinetics of polyion-induced colloidal complexes through Monte Carlo simulation, in which the effect of charge anisotropy is taken into account by a DLVO-like inter-particle potential, as recentely proposed by Velegol and Thwar (Langmuir 17, 7687 (2001)). The results reveal that the aggregation process slows down due to the progressive increase of the potential barrier height upon clustering. Within this framework, the experimentally observed cluster phases in polyelectrolyte-liposome solutions can be interpreted as a kinetic arrested state.
机译:吸附在带相反电荷的胶体颗粒上的聚合物链可以显着改变颗粒间的相互作用。对于足够量的添加的聚合物,原始的静电排斥甚至可以变成有效的吸引,并且可以形成相对较大的聚集体。两个粒子之间有吸引力的相互作用贡献来自于带相反电荷的粒子表面上聚离子的相关吸附,导致表面电荷分布不均匀。在这里,我们通过蒙特卡洛模拟研究聚离子诱导的胶体复合物的聚集动力学,其中,像Velegol和Thwar(Langmuir,17)最近提出的类似DLVO的粒子间电势考虑了电荷各向异性的影响。 7687(2001))。结果表明,由于聚簇时势垒高度的逐渐增加,聚集过程变慢。在此框架内,聚电解质脂质体溶液中实验观察到的簇相可以解释为动力学停滞状态。

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