Repository logo
 
No Thumbnail Available
Publication

Liquid-vapor interfaces of patchy colloids

Use this identifier to reference this record.
Name:Description:Size:Format: 
Liquid-vapor interfaces of patchy colloids.pdf1.21 MBAdobe PDF Download

Advisor(s)

Abstract(s)

We investigate the liquid-vapor interface of a model of patchy colloids. This model consists of hard spheres decorated with short-ranged attractive sites ("patches") of different types on their surfaces. We focus on a one-component fluid with two patches of type A and nine patches of type B (2A9B colloids), which has been found to exhibit reentrant liquid-vapor coexistence curves and very low-density liquid phases. We have used the density-functional theory form of Wertheim's first-order perturbation theory of association, as implemented by Yu and Wu [J. Chem. Phys. 116, 7094 (2002)], to calculate the surface tension, and the density and degree of association profiles, at the liquid-vapor interface of our model. In reentrant systems, where AB bonds dominate, an unusual thickening of the interface is observed at low temperatures. Furthermore, the surface tension versus temperature curve reaches a maximum, in agreement with Bernardino and Telo da Gama's mesoscopic Landau-Safran theory [Phys. Rev. Lett. 109, 116103 (2012)]. If BB attractions are also present, competition between AB and BB bonds gradually restores the monotonic temperature dependence of the surface tension. Lastly, the interface is "hairy," i.e., it contains a region where the average chain length is close to that in the bulk liquid, but where the density is that of the vapor. Sufficiently strong BB attractions remove these features, and the system reverts to the behavior seen in atomic fluids.

Description

Keywords

Density-functional theory Directional attractive forces Fundamental-measure-theory Associating fluid theory Multiple bonding sites Saft-Dft approach Phase-equilibria Chain molecules Hard-wall Mixtures

Citation

OLEKSY, Anna; TEIXEIRA, Paulo Ivo Cortez - Liquid-vapor interfaces of patchy colloids. Physical Review E. ISSN 1539-3755. Vol. 91, N.º 1 (2015), pp. 012301-1-012301-7

Research Projects

Organizational Units

Journal Issue

Publisher

Amer Physical SOC

CC License

Altmetrics