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Updated: May 28, 2026

Spatial Separation of Molecular Conformers and Clusters
Published on: January 9, 2014
Low density mesostructures of confined dipolar particles in an external field
1Laboratoire des Matériaux Mésoscopiques et Nanométriques, U.M.R. C.N.R.S. 7070, Université Pierre et Marie Curie (Paris VI), BP. 52, 4, place Jussieu, 75230 Paris Cedex 05, France. Johannes.Richardi@upmc.fr
Abstract:
Mesostructures formed by dipolar particles confined between two parallel walls and subjected to an external field are studied by Monte Carlo simulations. The main focus of the work is the structural behavior of the Stockmayer fluid in the low density regime. The dependence of cluster thickness and ordering is estimated as a function of density and wall separation, the two most influential parameters, for large dipole moments and high field strengths. The great sensitivity of the structure to details of the short-range part of the interactions is pointed out. In particular, the attractive part of the Lennard-Jones potential is shown to play a major role in driving chain aggregation. The effect of confinement, evaluated by comparison with results for a bulk system, is most pronounced for a short range hard sphere potential. No evidence is found for a novel "gel-like" phase recently uncovered in low density dipolar colloidal suspensions [A. K. Agarwal and A. Yethiraj, Phys. Rev. Lett. 102, 198301 (2009)].
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