In the liquid-liquid phase transition scenario, supercooled water separates into the high density liquid (HDL) and low density liquid (LDL) phases at temperatures lower than the second critical point. We investigate the effects of hydrophilic and hydrophobic solutes on the liquid-liquid phase transition using molecular dynamics simulations. It is found that a supercooled aqueous NaCl solution separates into solute-rich HDL and solute-poor LDL parts at low pressures. By contrast, a supercooled aqueous Ne solution separates into solute-rich LDL and solute-poor HDL parts at high pressures. Both the solutes increase the high temperature limit of the liquid-liquid separation. The degree of separation is quantified using the local density of solu...
A longstanding question in water research is the possibility that supercooled liquid water can under...
We determined liquid-liquid and liquid-vapor coexistence regions of various water models by restrict...
The liquid-liquid transition in supercooled liquid water, predicted to occur around 220 K, is contro...
In the liquid-liquid phase transition scenario, supercooled water separates into the high density li...
Water is the most abundant substance on Earth and in the human body. It is the medium in which most ...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
Two different scenarios have been proposed on the phase separation occurring in the deeply supercool...
In this paper we investigate by means of molecular dynamics computer simulations how the hypothesize...
Simulations and theory suggest that the thermodynamic anomalies of water may be related to a phase t...
We study by molecular dynamics simulations the dynamical properties of an aqueous solution of \docum...
Water is the most abundant liquid on earth and also the substance with the largest number of anomali...
Water is the most abundant liquid on earth and also the substance with the largest number of anomali...
In this paper we investigate the possibility to detect the hypothesized liquid-liquid critical point...
The complex behavior of liquid water, along with its anomalies and their crucial role in the existen...
Liquid water is considered to be a peculiar example of glass forming materials because of the possib...
A longstanding question in water research is the possibility that supercooled liquid water can under...
We determined liquid-liquid and liquid-vapor coexistence regions of various water models by restrict...
The liquid-liquid transition in supercooled liquid water, predicted to occur around 220 K, is contro...
In the liquid-liquid phase transition scenario, supercooled water separates into the high density li...
Water is the most abundant substance on Earth and in the human body. It is the medium in which most ...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
Two different scenarios have been proposed on the phase separation occurring in the deeply supercool...
In this paper we investigate by means of molecular dynamics computer simulations how the hypothesize...
Simulations and theory suggest that the thermodynamic anomalies of water may be related to a phase t...
We study by molecular dynamics simulations the dynamical properties of an aqueous solution of \docum...
Water is the most abundant liquid on earth and also the substance with the largest number of anomali...
Water is the most abundant liquid on earth and also the substance with the largest number of anomali...
In this paper we investigate the possibility to detect the hypothesized liquid-liquid critical point...
The complex behavior of liquid water, along with its anomalies and their crucial role in the existen...
Liquid water is considered to be a peculiar example of glass forming materials because of the possib...
A longstanding question in water research is the possibility that supercooled liquid water can under...
We determined liquid-liquid and liquid-vapor coexistence regions of various water models by restrict...
The liquid-liquid transition in supercooled liquid water, predicted to occur around 220 K, is contro...