Quantum chemical methods including Møller-Plesset perturbation (MP2) theory and density functional theory (DFT) have been used to study the structure, spectroscopy and reactivity of NO+.(H2O)n=1−5 clusters. MP2/6-311++G** calculations are shown to describe the structure and spectroscopy of the clusters well. DFT calculations with exchange-correlation functionals with a low fraction of Hartree-Fock exchange give a binding energy of NO+.(H2O) that is too high and incorrectly predict the lowest energy structure of NO+.(H2O)2, and this error may be associated with a delocalisation of charge onto the water molecule directly binding to NO+. Ab initio molecular dynamics (AIMD) simulations were performed to study the NO+.(H2O)5 → H+.(H2O)4 + HONO r...
Infrared spectra of mass‐selected clusters NO^+(H_2O)_n for n=1 to 5 were recorded from 2700 to 3800...
Computational quantum chemistry was used as a tool to predict needed thermochemistry and kinetics fo...
Computational quantum chemistry was used as a tool to predict needed thermochemistry and kinetics fo...
Quantum chemical methods including Møller-Plesset perturbation (MP2) theory and density functional t...
Quantum chemical methods including Møller-Plesset perturbation (MP2) theory and density functional t...
Quantum chemical methods including Møller–Plesset perturbation (MP2) theory and density functional t...
The structure, spectroscopy and reactivity of hydrated dioxygenyl cluster ions O2+.(H2O)n with n = 1...
Minimum energy geometries, harmonic vibrational frequencies, and stepwise binding energies have been...
Singlet and triplet potential energy surfaces of the reaction between molecular oxygen and two nitri...
The structure, spectroscopy and reactivity of hydrated dioxygenyl cluster ions O2+.(H2O)n with n = 1...
Ab initio molecular orbital calculations have been used to compute thermodynamic constants (?H°, ?S°...
Singlet and triplet potential energy surfaces of the reaction between molecular oxygen and two nitri...
Singlet and triplet potential energy surfaces of the reaction between molecular oxygen and two nitri...
The reaction of (NO(+))(NO3(-)) with water is modelled in ONONO2·(H2O)4 clusters. Molecular Dynamics...
The OH initiated oxidation of nitric oxide (NO) is an important atmospheric reaction being, during t...
Infrared spectra of mass‐selected clusters NO^+(H_2O)_n for n=1 to 5 were recorded from 2700 to 3800...
Computational quantum chemistry was used as a tool to predict needed thermochemistry and kinetics fo...
Computational quantum chemistry was used as a tool to predict needed thermochemistry and kinetics fo...
Quantum chemical methods including Møller-Plesset perturbation (MP2) theory and density functional t...
Quantum chemical methods including Møller-Plesset perturbation (MP2) theory and density functional t...
Quantum chemical methods including Møller–Plesset perturbation (MP2) theory and density functional t...
The structure, spectroscopy and reactivity of hydrated dioxygenyl cluster ions O2+.(H2O)n with n = 1...
Minimum energy geometries, harmonic vibrational frequencies, and stepwise binding energies have been...
Singlet and triplet potential energy surfaces of the reaction between molecular oxygen and two nitri...
The structure, spectroscopy and reactivity of hydrated dioxygenyl cluster ions O2+.(H2O)n with n = 1...
Ab initio molecular orbital calculations have been used to compute thermodynamic constants (?H°, ?S°...
Singlet and triplet potential energy surfaces of the reaction between molecular oxygen and two nitri...
Singlet and triplet potential energy surfaces of the reaction between molecular oxygen and two nitri...
The reaction of (NO(+))(NO3(-)) with water is modelled in ONONO2·(H2O)4 clusters. Molecular Dynamics...
The OH initiated oxidation of nitric oxide (NO) is an important atmospheric reaction being, during t...
Infrared spectra of mass‐selected clusters NO^+(H_2O)_n for n=1 to 5 were recorded from 2700 to 3800...
Computational quantum chemistry was used as a tool to predict needed thermochemistry and kinetics fo...
Computational quantum chemistry was used as a tool to predict needed thermochemistry and kinetics fo...