arXiv · cond-mat/0601452
Aggregation kinetics in a model colloidal suspension
Abstract
We present molecular dynamics simulations of aggregation kinetics in a colloidal suspension modeled as a highly asymmetric binary mixture. Starting from a configuration with largely uncorrelated colloidal particles the system relaxes by coagulation-fragmentation dynamics to a structured state of low-dimensionality clusters with an exponential size distribution. The results show that short-range repulsive interactions alone can give rise to so-called cluster phases. For the present model and probably other, more common colloids, the observed clusters appear to be equilibrium phase fluctuations induced by the entropic inter-colloidal attractions.
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Sorin Bastea. 2006-01-19. Aggregation kinetics in a model colloidal suspension. https://doi.org/10.1103/physrevlett.96.028305
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