The nucleophilic substitution reaction Cl- + CH3Cl → ClCH3 + Cl- has been studied quantum mechanically by means of stabilisation and scattering calculations. A reduced dimensionality Hamiltonian model has been employed in which the bonds that are broken and formed during reaction, ClC and CCl, are explicitly treated. The reaction is driven by many narrow scattering resonances, which are analysed by means of the stabilisation method. It is found that part of the quasibound states are assignable by quantum numbers v and n, describing excitations in the intramolecular, CCl, and intermolecular, Cl-···C, stretching modes of the Cl-···CH3Cl complex, respectively. The connection between reactivity and the splitting of resonance states of different...
We present in this paper a time-dependent quantum wave packet calculation of the initial state selec...
We investigate the influence of van der Waals wells on the quantum scattering dynamics of the Cl + H...
Author Institution: The University of Wisconsin - Madison Department of Chemistry, 1101 University A...
An effective two-dimensional potential energy surface has been constructed for the S<sub>N</sub>2 re...
An effective two-dimensional potential energy surface has been constructed for the SN2 reaction Cl-+...
Author Institution: Max-Planck-Institut f\""ur Str\""omungsforschung; Institut f\""ur Physikalische ...
The gas-phase SN2 reaction Cl-+CH3Br(v,k)→ClCH3(v′k′) + Br- has been studied using reduced dimension...
Time independent quantum scattering calculations have been carried out on the SN2 Walden inversion r...
Despite its importance in chemistry, the microscopic dynamics of bimolecular nucleophilic substituti...
We present converged quantum scattering results for the Cl + HCl - ClH + Cl reaction in which the th...
The SN2 substitution reactions at phosphorus play a key role in organic and biological processes. Qu...
A variety of quantum mechanical methods have been developed and applied to the study of highly energ...
Semiclassical (SC) molecular dynamics theory provides a general and well-defined tool for including ...
We present quantum dynamical investigations into the F + CHD(3) reaction. In our reduced dimensional...
We describe a novel theoretical approach to the bimolecular nucleophilic substitution (S(N)2) reacti...
We present in this paper a time-dependent quantum wave packet calculation of the initial state selec...
We investigate the influence of van der Waals wells on the quantum scattering dynamics of the Cl + H...
Author Institution: The University of Wisconsin - Madison Department of Chemistry, 1101 University A...
An effective two-dimensional potential energy surface has been constructed for the S<sub>N</sub>2 re...
An effective two-dimensional potential energy surface has been constructed for the SN2 reaction Cl-+...
Author Institution: Max-Planck-Institut f\""ur Str\""omungsforschung; Institut f\""ur Physikalische ...
The gas-phase SN2 reaction Cl-+CH3Br(v,k)→ClCH3(v′k′) + Br- has been studied using reduced dimension...
Time independent quantum scattering calculations have been carried out on the SN2 Walden inversion r...
Despite its importance in chemistry, the microscopic dynamics of bimolecular nucleophilic substituti...
We present converged quantum scattering results for the Cl + HCl - ClH + Cl reaction in which the th...
The SN2 substitution reactions at phosphorus play a key role in organic and biological processes. Qu...
A variety of quantum mechanical methods have been developed and applied to the study of highly energ...
Semiclassical (SC) molecular dynamics theory provides a general and well-defined tool for including ...
We present quantum dynamical investigations into the F + CHD(3) reaction. In our reduced dimensional...
We describe a novel theoretical approach to the bimolecular nucleophilic substitution (S(N)2) reacti...
We present in this paper a time-dependent quantum wave packet calculation of the initial state selec...
We investigate the influence of van der Waals wells on the quantum scattering dynamics of the Cl + H...
Author Institution: The University of Wisconsin - Madison Department of Chemistry, 1101 University A...