The most intriguing hypothesis explaining many water anomalies is a metastable liquid-liquid phase transition (LLPT) at high pressure and low temperatures, experimentally hidden by homogeneous nucleation. Recent infrared spectroscopic experiments showed that upon addition of hydrazinium trifluoroacetate to water, the supercooled ionic solution undergoes a sharp, reversible LLPT at ambient pressure, possible offspring of that in pure water. Here, we calculate the temperature-dependent signature of the OH-stretching band, reporting on the low/high density phase of water, in neat water and in the same experimentally investigated ionic solution. The comparison between the infrared signature of the pure liquid and that of the ionic solution can ...
In this review, we report recent progress in the field of supercooled water. Due to its uniqueness, ...
We present evidence from experiments and computer simulations supporting the hypothesis that water d...
In the liquid-liquid phase transition scenario, supercooled water separates into the high density li...
The most intriguing hypothesis explaining many water anomalies is a metastable liquid-liquid phase t...
Simulations and theory suggest that the thermodynamic anomalies of water may be related to a phase t...
The liquid-liquid transition in supercooled liquid water, predicted to occur around 220 K, is contro...
The properties of liquids have been linked to the existence of the liquid-liquid transition (LLT), a...
Nanoscale water clusters in an ionic liquid matrix, also called “water pockets,” were previously fou...
Many of the anomalous properties of water may be explained by invoking a second critical point that ...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
Water forms two glassy waters, low-density and high-density amorphs, which undergo a reversible poly...
Ionic liquid (IL)-water mixtures can exhibit a lower critical solution temperature (LCST) transition...
"We consider and compare the structural properties of bulk TIP4P water and of a sodium chloride aque...
This article presents an overview of recent experiments performed on transport properties of water i...
Recent experiments continue to find evidence for a liquid-liquid phase transition (LLPT) in supercoo...
In this review, we report recent progress in the field of supercooled water. Due to its uniqueness, ...
We present evidence from experiments and computer simulations supporting the hypothesis that water d...
In the liquid-liquid phase transition scenario, supercooled water separates into the high density li...
The most intriguing hypothesis explaining many water anomalies is a metastable liquid-liquid phase t...
Simulations and theory suggest that the thermodynamic anomalies of water may be related to a phase t...
The liquid-liquid transition in supercooled liquid water, predicted to occur around 220 K, is contro...
The properties of liquids have been linked to the existence of the liquid-liquid transition (LLT), a...
Nanoscale water clusters in an ionic liquid matrix, also called “water pockets,” were previously fou...
Many of the anomalous properties of water may be explained by invoking a second critical point that ...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
Water forms two glassy waters, low-density and high-density amorphs, which undergo a reversible poly...
Ionic liquid (IL)-water mixtures can exhibit a lower critical solution temperature (LCST) transition...
"We consider and compare the structural properties of bulk TIP4P water and of a sodium chloride aque...
This article presents an overview of recent experiments performed on transport properties of water i...
Recent experiments continue to find evidence for a liquid-liquid phase transition (LLPT) in supercoo...
In this review, we report recent progress in the field of supercooled water. Due to its uniqueness, ...
We present evidence from experiments and computer simulations supporting the hypothesis that water d...
In the liquid-liquid phase transition scenario, supercooled water separates into the high density li...