Cluster anions for which the excess electron occupies an extended nonvalence orbital can be described by use of a model Hamiltonian employing quantum Drude oscillators to represent the polarizable charge distributions of the monomers. In this work, a Drude model for water cluster anions is described and used to investigate the (H2O)13(-) cluster. Several low-energy isomers are characterized, and the finite-temperature properties of the cluster are investigated by means of parallel tempering Monte Carlo simulations. Two structural motifs, one with double-acceptor water monomers and the other with four-membered rings of double-acceptor single-donor monomers with four free OH groups pointed in the same direction, are found to lead to large (ap...
The problem of the binding of an excess electron to polar molecules and their clusters with sufficie...
(H2O)(6) (-) appears as a "magic" number water cluster in (H2O)(n) (-) mass spectra. The structure o...
(H2O)(6) (-) appears as a "magic" number water cluster in (H2O)(n) (-) mass spectra. The structure o...
Cluster anions for which the excess electron occupies an extended nonvalence orbital can be describe...
Cluster anions for which the excess electron occupies an extended nonvalence orbital can be describe...
A quantum Drude oscillator model was developed by our group to describe excess electrons interacting...
A quantum Drude oscillator model was developed by our group to describe excess electrons interacting...
A quantum Drude oscillator model was developed by our group to describe excess electrons interacting...
We present a new model for characterizing the interactions of excess electrons with (H2O)n- clusters...
We present a new model for characterizing the interactions of excess electrons with (H2O)n- clusters...
A one-electron model potential approach for calculating the binding energies of an excess electron\u...
A one-electron model potential approach for calculating the binding energies of an excess electron\u...
In this work we focus on the binding of excess electrons to water clusters, a problem for which disp...
In this work we focus on the binding of excess electrons to water clusters, a problem for which disp...
It is has been established that the excess electrons in small (i.e., n < or = 7) (H2O)n- clusters ar...
The problem of the binding of an excess electron to polar molecules and their clusters with sufficie...
(H2O)(6) (-) appears as a "magic" number water cluster in (H2O)(n) (-) mass spectra. The structure o...
(H2O)(6) (-) appears as a "magic" number water cluster in (H2O)(n) (-) mass spectra. The structure o...
Cluster anions for which the excess electron occupies an extended nonvalence orbital can be describe...
Cluster anions for which the excess electron occupies an extended nonvalence orbital can be describe...
A quantum Drude oscillator model was developed by our group to describe excess electrons interacting...
A quantum Drude oscillator model was developed by our group to describe excess electrons interacting...
A quantum Drude oscillator model was developed by our group to describe excess electrons interacting...
We present a new model for characterizing the interactions of excess electrons with (H2O)n- clusters...
We present a new model for characterizing the interactions of excess electrons with (H2O)n- clusters...
A one-electron model potential approach for calculating the binding energies of an excess electron\u...
A one-electron model potential approach for calculating the binding energies of an excess electron\u...
In this work we focus on the binding of excess electrons to water clusters, a problem for which disp...
In this work we focus on the binding of excess electrons to water clusters, a problem for which disp...
It is has been established that the excess electrons in small (i.e., n < or = 7) (H2O)n- clusters ar...
The problem of the binding of an excess electron to polar molecules and their clusters with sufficie...
(H2O)(6) (-) appears as a "magic" number water cluster in (H2O)(n) (-) mass spectra. The structure o...
(H2O)(6) (-) appears as a "magic" number water cluster in (H2O)(n) (-) mass spectra. The structure o...