We study the thermodynamic and structural properties of a five-site tetrahedral molecular model by means of different Monte Carlo simulation techniques, and the reference interaction site model (RISM) theory of molecular fluids. Simulations and theory signal the onset, at sufficiently low temperatures, of two different tetrahedral molecular arrangements, with a more open topology progressively giving place to a fully bonded one, as the temperature decreases. The RISM theory reproduces the splitting of the static structure factor at low temperatures, a feature intimately related to the onset of the tetrahedral ordering. Less accurate predictions are obtained for the liquid-vapor coexistence and the short-range correlations.

Simulation and theory of a model for tetrahedral colloidal particles

MUNAO', GIANMARCO;COSTA, Dino;CACCAMO, Carlo
2011-01-01

Abstract

We study the thermodynamic and structural properties of a five-site tetrahedral molecular model by means of different Monte Carlo simulation techniques, and the reference interaction site model (RISM) theory of molecular fluids. Simulations and theory signal the onset, at sufficiently low temperatures, of two different tetrahedral molecular arrangements, with a more open topology progressively giving place to a fully bonded one, as the temperature decreases. The RISM theory reproduces the splitting of the static structure factor at low temperatures, a feature intimately related to the onset of the tetrahedral ordering. Less accurate predictions are obtained for the liquid-vapor coexistence and the short-range correlations.
2011
Inglese
STAMPA
134
9
194502-1
194502-8
8
http://dx.doi.org/10.1063/1.3582904
Internazionale
Esperti anonimi
Colloids; tetrahedral order; patchy particles; molecular theory of liquid state
no
info:eu-repo/semantics/article
Munao' G.; Costa D.; Sciortino F.; Caccamo C.
14.a Contributo in Rivista::14.a.1 Articolo su rivista
4
262
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/1912294
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