How soft repulsion enhances the depletion mechanism
Abstract
We investigate binary mixtures of large colloids interacting through soft potentials with small, ideal depletants. We show that softness has a dramatic effect on the resulting colloid-colloid effective potential when the depletant-to-colloid size ratio is small, with significant consequences on the colloidal phase behaviour. We also provide an exact relation that allows us to obtain the effective pair potential for {\it any} type of colloid-depletant interactions in the case of ideal depletants, without having to rely on complicated and expensive full-mixture simulations. We also show that soft repulsion among depletants further enhances the tendency of colloids to aggregate. Our theoretical and numerical results demonstrate that --- in the limit of small --- soft mixtures cannot be mapped onto hard systems and hence soft depletion is not a mere extension of the widely used Asakura-Oosawa potential.
Cite
@article{arxiv.1409.0903,
title = {How soft repulsion enhances the depletion mechanism},
author = {Lorenzo Rovigatti and Nicoletta Gnan and Alberto Parola and Emanuela Zaccarelli},
journal= {arXiv preprint arXiv:1409.0903},
year = {2015}
}
Comments
Accepted for publication in Soft Matter