We report results from molecular dynamics simulations of the freezing transition of TIP5P water molecules confined between two parallel plates under the influence of a homogeneous external electric field, with magnitude of 5 V/nm, along the lateral direction. For water confined to a thickness of a trilayer we find two different phases of ice at a temperature of T=280 K. The transformation between the two, proton-ordered, ice phases is found to be a strong first-order transition. The low-density ice phase is built from hexagonal rings parallel to the confining walls and corresponds to the structure of cubic ice. The high-density ice phase has an in-plane rhombic symmetry of the oxygen atoms and larger distortion of hydrogen bond angles. The ...
The structure of the hydrogen bond network is a key element for understanding water’s thermodynamic ...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...
We report results from molecular dynamics simulations of the freezing transition of TIP5P water mole...
We report results from molecular dynamics simulations of the freezing and melting, at ambient temper...
Molecular dynamics simulations were performed to study the phase behavior of a thin film of water co...
We report results from molecular dynamics simulations of water under confinement and at ambient cond...
Molecular dynamics simulations demonstrate that there are at least two classes of quasi-two-dimensio...
Understanding the phase behaviour of nanoconfined water films is of fundamental importance in broad ...
Molecular dynamics simulations for a thin film of water confined to a slit nanopore are performed in...
This thesis aims to understand the influence of electric fields on ice nucleation. Molecular dynamic...
The dimensionality of a system largely determines the nature of any long range order that is possibl...
The dimensionality of a system largely determines the nature of any long range order that is possibl...
Liquid water is not only of obvious importance but also extremely intriguing, displaying many anomal...
The structure of the hydrogen bond network is a key element for understanding water’s thermodynamic ...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...
We report results from molecular dynamics simulations of the freezing transition of TIP5P water mole...
We report results from molecular dynamics simulations of the freezing and melting, at ambient temper...
Molecular dynamics simulations were performed to study the phase behavior of a thin film of water co...
We report results from molecular dynamics simulations of water under confinement and at ambient cond...
Molecular dynamics simulations demonstrate that there are at least two classes of quasi-two-dimensio...
Understanding the phase behaviour of nanoconfined water films is of fundamental importance in broad ...
Molecular dynamics simulations for a thin film of water confined to a slit nanopore are performed in...
This thesis aims to understand the influence of electric fields on ice nucleation. Molecular dynamic...
The dimensionality of a system largely determines the nature of any long range order that is possibl...
The dimensionality of a system largely determines the nature of any long range order that is possibl...
Liquid water is not only of obvious importance but also extremely intriguing, displaying many anomal...
The structure of the hydrogen bond network is a key element for understanding water’s thermodynamic ...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...
The structure of the hydrogen bond network is a key element for understanding water's thermodynamic ...