Non-equilibrium view of the amorphous solidification of liquids with competing interactions

Author:

Carretas-Talamante Ana Gabriela1ORCID,Zepeda-López Jesús Benigno1ORCID,Lázaro-Lázaro Edilio1ORCID,Elizondo-Aguilera Luis Fernando2ORCID,Medina-Noyola Magdaleno1ORCID

Affiliation:

1. Instituto de Física “Manuel Sandoval Vallarta,” Universidad Autónoma de San Luis Potosí 1 , Álvaro Obregón 64, 78000 San Luis Potosí, Mexico

2. Instituto de Física, Benemérita Universidad Autónoma de Puebla 2 , Apartado Postal J-48 72570, Puebla, Mexico

Abstract

The interplay between short-range attractions and long-range repulsions (SALR) characterizes the so-called liquids with competing interactions, which are known to exhibit a variety of equilibrium and non-equilibrium phases. The theoretical description of the phenomenology associated with glassy or gel states in these systems has to take into account both the presence of thermodynamic instabilities (such as those defining the spinodal line and the so called λ line) and the limited capability to describe genuine non-equilibrium processes from first principles. Here, we report the first application of the non-equilibrium self-consistent generalized Langevin equation theory to the description of the dynamical arrest processes that occur in SALR systems after being instantaneously quenched into a state point in the regions of thermodynamic instability. The physical scenario predicted by this theory reveals an amazing interplay between the thermodynamically driven instabilities, favoring equilibrium macro- and micro-phase separation, and the kinetic arrest mechanisms, favoring non-equilibrium amorphous solidification of the liquid into an unexpected variety of glass and gel states.

Funder

Consejo Nacional de Ciencia y Tecnología

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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