We report a numerical investigation of two colloids immersed in a critical solvent, with the aim of quantifying the effective colloid-colloid interaction potential. By turning on an attraction between the colloid and the solvent particles we follow the evolution from the case in which the solvent density close to the colloids changes from values smaller than the bulk to values larger than the bulk. We thus effectively implement the so-called (+, +) and (-, -) boundary conditions defined in field theoretical approaches focused on the description of critical Casimir forces. We find that the effective potential at large distances decays exponentially, with a characteristic decay length compatible with the bulk critical correlation length, in full agreement with theoretical predictions. We also investigate the case of (+, -) boundary condition, where the effective potential becomes repulsive. Our study provides a guidance for a design of the interaction potential which can be exploited to control the stability of colloidal systems.

Tuning effective interactions close to the critical point in colloidal suspensions

Nicoletta Gnan;Emanuela Zaccarelli;Francesco Sciortino
2012

Abstract

We report a numerical investigation of two colloids immersed in a critical solvent, with the aim of quantifying the effective colloid-colloid interaction potential. By turning on an attraction between the colloid and the solvent particles we follow the evolution from the case in which the solvent density close to the colloids changes from values smaller than the bulk to values larger than the bulk. We thus effectively implement the so-called (+, +) and (-, -) boundary conditions defined in field theoretical approaches focused on the description of critical Casimir forces. We find that the effective potential at large distances decays exponentially, with a characteristic decay length compatible with the bulk critical correlation length, in full agreement with theoretical predictions. We also investigate the case of (+, -) boundary condition, where the effective potential becomes repulsive. Our study provides a guidance for a design of the interaction potential which can be exploited to control the stability of colloidal systems.
2012
Istituto dei Sistemi Complessi - ISC
Inglese
137
8
084903
7
http://scitation.aip.org/content/aip/journal/jcp/137/8/10.1063/1.4745479
Sì, ma tipo non specificato
CRITICAL CASIMIR FORCES
PARTICLES
MIXTURES
3
info:eu-repo/semantics/article
262
Gnan, Nicoletta; Zaccarelli, Emanuela; Sciortino, Francesco
01 Contributo su Rivista::01.01 Articolo in rivista
restricted
   Patchy colloidal particles: a powerful arsenal for the fabrication of tomorrow new super-molecules . A theoretical and numerical study of their assembly processes.
   PATCHYCOLLOIDS
   FP7
   226207
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/19751
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