Colloidal aggregation and critical Casimir forces
arXiv:1006.5897 · doi:10.1103/PhysRevLett.105.059601
Abstract
A recent Letter [Phys. Rev. Lett. 103, 156101 (2009)] reports the experimental observation of aggregation of colloidal particles dispersed in a liquid mixture of heavy water and 3-methylpyridine. The experimental data are interpreted in terms of a model which accounts solely for the competing effects of the interparticle electrostatic repulsion and of the attractive critical Casimir force. Here we show, however, that the reported aggregation actually occurs within ranges of values of the correlation length and of the Debye screening length ruled out by the proposed model and that a significant part of the experimental data presented in the Letter cannot be consistently interpreted in terms of such a model.
1 page, 1 figure; For the reply see arXiv:1007.0770
Cited by in corpus (5)
- Salt-induced changes of colloidal interactions in critical mixtures
- Thermodynamic Casimir Forces between a Sphere and a Plate: Monte Carlo Simulation of a Spin Model
- Critical Casimir forces steered by patterned substrates
- Critical Casimir forces and colloidal aggregation: A numerical study
- Thermodynamic Casimir Effect in Films: the Exchange Cluster Algorithm