We study the phase diagram of a binary mixture of patchy particles which has been designed to form a reversible gel. For this we perform Monte Carlo and molecular dynamics simulations to investigate the thermodynamics of such a system and compare our numerical results with predictions based on the analytical parameter-free Wertheim theory. We explore a wide range of the temperature-density-composition space that defines the three-dimensional phase diagram of the system. As a result, we delimit the region of thermodynamic stability of the fluid. We find that for a large region of the phase diagram the Wertheim theory is able to give a quantitative description of the system. For higher densities, our simulations show that the system is crystallizing into a BCC structure. Finally, we study the relaxation dynamics of the system by means of the density and temperature dependences of the diffusion coefficient. We show that there exists a density range where the system passes reversibly from a gel to a fluid upon both heating and cooling, encountering neither demixing nor phase separation. © 2013 AIP Publishing LLC.

Phase diagram of a reentrant gel of patchy particles / Sandalo Roldan, Vargas; Smallenburg, Frank; Walter, Kob; Sciortino, Francesco. - In: THE JOURNAL OF CHEMICAL PHYSICS. - ISSN 0021-9606. - 139:24(2013), p. 244910. [10.1063/1.4849115]

Phase diagram of a reentrant gel of patchy particles

SMALLENBURG, FRANK;SCIORTINO, Francesco
2013

Abstract

We study the phase diagram of a binary mixture of patchy particles which has been designed to form a reversible gel. For this we perform Monte Carlo and molecular dynamics simulations to investigate the thermodynamics of such a system and compare our numerical results with predictions based on the analytical parameter-free Wertheim theory. We explore a wide range of the temperature-density-composition space that defines the three-dimensional phase diagram of the system. As a result, we delimit the region of thermodynamic stability of the fluid. We find that for a large region of the phase diagram the Wertheim theory is able to give a quantitative description of the system. For higher densities, our simulations show that the system is crystallizing into a BCC structure. Finally, we study the relaxation dynamics of the system by means of the density and temperature dependences of the diffusion coefficient. We show that there exists a density range where the system passes reversibly from a gel to a fluid upon both heating and cooling, encountering neither demixing nor phase separation. © 2013 AIP Publishing LLC.
2013
01 Pubblicazione su rivista::01a Articolo in rivista
Phase diagram of a reentrant gel of patchy particles / Sandalo Roldan, Vargas; Smallenburg, Frank; Walter, Kob; Sciortino, Francesco. - In: THE JOURNAL OF CHEMICAL PHYSICS. - ISSN 0021-9606. - 139:24(2013), p. 244910. [10.1063/1.4849115]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/557041
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