We derive by computer simulation the radial distribution functions of water confined in a silica pore modeled to reproduce MCM-41. We perform the calculations in a range of temperatures from ambient to deep supercooling for the subset of water molecules that reside in the inner shell (free water) by applying the excluded volume corrections. By comparing with bulk water we find that the first shell of the oxygen-oxygen and hydrogen-hydrogen radial distribution functions is less sharp and the first minimum fills in while the oxygen-hydrogen structure does not significantly change, indicating that the free water keeps the hydrogen bond short range order. The two body excess entropy of supercooled water is calculated from the radial distributio...
We present here molecular dynamics simulations of deeply supercooled SPC/E water confined in a cylin...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...
We study the temperature behavior of the first four peaks of the oxygen-oxygen radial distribution f...
We derive by computer simulation the radial distribution functions of water confined in a silica por...
We derive by computer simulation the radial distribution functions of water confined in a silica por...
We review our simulation results on properties of supercooled confined water. We consider two situat...
We review our simulation results on properties of supercooled confined water. We consider two situa...
We review our simulation results on properties of supercooled confined water. We consider two situa...
The two-body excess entropy of supercooled water is calculated from the radial distribution function...
Water is an ubiquitous liquid and it is necessary for life;studies on water are therefore of obvious...
The two-body excess entropy of supercooled water is calculated from the radial distribution function...
ABSTRACT We present here molecular dynamics simulations of deeply super-cooled SPC/E water confined ...
Due to the widespread importance of water and the difficulty to study it in the so-called no man\u27...
Water is an ubiquitous liquid and it is necessary for life;. Studies on water are therefore of obvio...
In biological cells, water is confined by macromolecules. Additionally, huge amounts of water are co...
We present here molecular dynamics simulations of deeply supercooled SPC/E water confined in a cylin...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...
We study the temperature behavior of the first four peaks of the oxygen-oxygen radial distribution f...
We derive by computer simulation the radial distribution functions of water confined in a silica por...
We derive by computer simulation the radial distribution functions of water confined in a silica por...
We review our simulation results on properties of supercooled confined water. We consider two situat...
We review our simulation results on properties of supercooled confined water. We consider two situa...
We review our simulation results on properties of supercooled confined water. We consider two situa...
The two-body excess entropy of supercooled water is calculated from the radial distribution function...
Water is an ubiquitous liquid and it is necessary for life;studies on water are therefore of obvious...
The two-body excess entropy of supercooled water is calculated from the radial distribution function...
ABSTRACT We present here molecular dynamics simulations of deeply super-cooled SPC/E water confined ...
Due to the widespread importance of water and the difficulty to study it in the so-called no man\u27...
Water is an ubiquitous liquid and it is necessary for life;. Studies on water are therefore of obvio...
In biological cells, water is confined by macromolecules. Additionally, huge amounts of water are co...
We present here molecular dynamics simulations of deeply supercooled SPC/E water confined in a cylin...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...
We study the temperature behavior of the first four peaks of the oxygen-oxygen radial distribution f...