The boson peak in deeply cooled water confined in nanopores is studied to examine the liquid-liquid transition (LLT). Below ∼180 K, the boson peaks at pressures P higher than ∼3.5 kbar are evidently distinct from those at low pressures by higher mean frequencies and lower heights. Moreover, the higher-P boson peaks can be rescaled to a master curve while the lower-P boson peaks can be rescaled to a different one. These phenomena agree with the existence of two liquid phases with different densities and local structures and the associated LLT in the measured (P, T) region. In addition, the P dependence of the librational band also agrees with the above conclusion.United States. Dept. of Energy (Grant DE-FG02-90ER45429
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Liquid water nanodroplets are important in earth’s climate, and are valuable for studying supercoole...
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We use ²H NMR to study the rotational motion of supercooled water in silica pores of various diamete...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
Pressure is extremely efficient to tune intermolecular interactions, allowing the study of the mecha...
The boson peak of deeply cooled water confined in the pores of a silica xerogel is studied by inelas...
We perform extensive molecular dynamics simulations of the TIP4P/2005 model of water to investigate ...
In this paper we present a review on our recent experimental investigations into the phase behavior ...
This article presents an overview of recent experiments performed on transport properties of water i...
In this work we investigate, by means of Elastic Neutron Scattering (ENS), the pressure dependence o...
Water’s behavior differs from that of normal fluids, having more than sixty anomalies. Simulations a...
We use molecular dynamics simulations to study how the confinement affects the dynamic, thermodynami...
International audienceThe Boson peak of deeply cooled water confined in the pores of a silica xeroge...
Liquid water nanodroplets are important in earth’s climate, and are valuable for studying supercoole...
Using neutron diffraction technique, we measure the average density of the heavy water confined in a...
We use molecular dynamics simulations to study the effects of confinement on the phase behavior of a...
The stories behind supercooled bulk and confined water can be different. Bulk water has a metastable...
We use ²H NMR to study the rotational motion of supercooled water in silica pores of various diamete...
Supercooled liquids and the glass transition are not satisfactorily understood to date. The temperat...
Pressure is extremely efficient to tune intermolecular interactions, allowing the study of the mecha...