In a recent paper, we have developed an efficient implementation of the ring polymer molecular dynamics (RPMD) method for calculating bimolecular chemical reaction rates in the gas phase, and illustrated it with applications to some benchmark atom-diatom reactions. In this paper, we show that the same methodology can readily be used to treat more complex polyatomic reactions in their full dimensionality, such as the hydrogen abstraction reaction from methane, H + CH(4) → H(2) + CH(3). The present calculations were carried out using a modified and recalibrated version of the Jordan-Gilbert potential energy surface. The thermal rate coefficients obtained between 200 and 2000 K are presented and compared with previous results for the same pote...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
To compute the rate coefficients of the hydrogen abstraction of chlorine plus methane (Me), ethane (...
Following our previous study of prototypical insertion reactions of energetically asymmetric type wi...
We describe an efficient procedure for calculating the rates of bimolecular chemical reactions in th...
A fundamental issue in the field of reaction dynamics is the inclusion of the quantum mechanical (QM...
The inclusion of Quantum Mechanical (QM) effects such as zero point energy (ZPE) and tunneling in si...
A fundamental issue in the field of reaction dynamics is the inclusion of the quantum mechanical (QM...
The thermal rate coefficients and kinetic isotope effects have been calculated using ring polymer mo...
Thermal rate coefficients and kinetic isotope effect have been calculated for prototypical heavy–lig...
The thermal rate constants of two prototypical insertion-type reactions, namely, N/O + H<sub>2</sub>...
We present RPMDrate, a computer program for the calculation of gas phase bimolecular reaction rate c...
The thermal rate constant of the O([superscript 3]P) + CH[subscript 4] → OH + CH[subscript 3] reacti...
The accurate and efficient calculation of the rate coefficients of chemical reactions is a key issue...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
We apply Thermostatted Ring Polymer Molecular Dynamics (TRPMD), a recently-proposed approximate quan...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
To compute the rate coefficients of the hydrogen abstraction of chlorine plus methane (Me), ethane (...
Following our previous study of prototypical insertion reactions of energetically asymmetric type wi...
We describe an efficient procedure for calculating the rates of bimolecular chemical reactions in th...
A fundamental issue in the field of reaction dynamics is the inclusion of the quantum mechanical (QM...
The inclusion of Quantum Mechanical (QM) effects such as zero point energy (ZPE) and tunneling in si...
A fundamental issue in the field of reaction dynamics is the inclusion of the quantum mechanical (QM...
The thermal rate coefficients and kinetic isotope effects have been calculated using ring polymer mo...
Thermal rate coefficients and kinetic isotope effect have been calculated for prototypical heavy–lig...
The thermal rate constants of two prototypical insertion-type reactions, namely, N/O + H<sub>2</sub>...
We present RPMDrate, a computer program for the calculation of gas phase bimolecular reaction rate c...
The thermal rate constant of the O([superscript 3]P) + CH[subscript 4] → OH + CH[subscript 3] reacti...
The accurate and efficient calculation of the rate coefficients of chemical reactions is a key issue...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
We apply Thermostatted Ring Polymer Molecular Dynamics (TRPMD), a recently-proposed approximate quan...
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969...
To compute the rate coefficients of the hydrogen abstraction of chlorine plus methane (Me), ethane (...
Following our previous study of prototypical insertion reactions of energetically asymmetric type wi...