We have investigated the hydration dynamics in size selected water clusters with n=66, 104, 200, 500 and 1000 water molecules using molecular dynamics simulations. To study the most fundamental aspects of relaxation phenomena in clusters, we choose one of the simplest, still realistic, quantum mechanically treated test solute, an excess electron. The project focuses on the time evolution of the clusters following two processes, electron attachment to neutral equilibrated water clusters and electron detachment from an equilibrated water cluster anion. The relaxation dynamics is significantly different in the two processes, most notably restoring the equilibrium final state is less effective after electron attachment. Nevertheless, in both sc...
The structure of the hydrated electron is a matter of debate as it evades direct experimental observ...
ABSTRACT: Water cluster anions, (H2O)N , are examined using mixed quantum/classical molecular dynami...
We performed a series of ab initio molecular dynamics simulations to investigate the physical proper...
Understanding the properties of hydrated electrons, which were first observed using pulse radiolysis...
We directly observed the hydration dynamics of an excess electron in the finite-sized water clusters...
An ongoing controversy about water cluster anions concerns the electron-binding motif, whether the c...
We compare the applicability of three electron-water molecule pseudopotential models in modeling hyd...
We have used mixed quantum-classical molecular dynamics simulations to explore the role of structura...
We evaluate the applicability of a hierarchy of quantum models in characterizing the binding energy ...
A hydrated electron is formed when an excess electron is captured and stablized by an aqueous soluti...
We present a combined quantum chemical and molecular dynamics study of cyclic and noncyclic water n-...
Excess electrons in condensed-phase media play a crucial role in the dynamics of important chemical ...
We present a computational study of the structure and dynamics of an excess electron in a medium-siz...
We have investigated the solvation dynamics and the genuine binding energy and photoemission anisotr...
Cluster-size-resolved ultrafast dynamics of the solvated electron in neutral water clusters with n =...
The structure of the hydrated electron is a matter of debate as it evades direct experimental observ...
ABSTRACT: Water cluster anions, (H2O)N , are examined using mixed quantum/classical molecular dynami...
We performed a series of ab initio molecular dynamics simulations to investigate the physical proper...
Understanding the properties of hydrated electrons, which were first observed using pulse radiolysis...
We directly observed the hydration dynamics of an excess electron in the finite-sized water clusters...
An ongoing controversy about water cluster anions concerns the electron-binding motif, whether the c...
We compare the applicability of three electron-water molecule pseudopotential models in modeling hyd...
We have used mixed quantum-classical molecular dynamics simulations to explore the role of structura...
We evaluate the applicability of a hierarchy of quantum models in characterizing the binding energy ...
A hydrated electron is formed when an excess electron is captured and stablized by an aqueous soluti...
We present a combined quantum chemical and molecular dynamics study of cyclic and noncyclic water n-...
Excess electrons in condensed-phase media play a crucial role in the dynamics of important chemical ...
We present a computational study of the structure and dynamics of an excess electron in a medium-siz...
We have investigated the solvation dynamics and the genuine binding energy and photoemission anisotr...
Cluster-size-resolved ultrafast dynamics of the solvated electron in neutral water clusters with n =...
The structure of the hydrated electron is a matter of debate as it evades direct experimental observ...
ABSTRACT: Water cluster anions, (H2O)N , are examined using mixed quantum/classical molecular dynami...
We performed a series of ab initio molecular dynamics simulations to investigate the physical proper...