We report a chemically accurate global potential energy surface for the HOCO system based on high-level ab initio calculations at ~35000 points. The potential energy surface is shown to reproduce important stationary points and minimum energy paths. Quasi-classical trajectory calculations indicated a good agreement with experimental data
Dynamics calculations require the construction of a potential energy surface (PES). This presentatio...
A new global potential energy surface (PES) is being generated for O(P-3) + H2 yields OH + H. This s...
A global many-body expansion potential energy surface is reported for the electronic ground state of...
We report a new global potential energy surface of the HOCO system based on the F12 correction of un...
We report extensive quasi-classical trajectory calculations of the HO + CO → H + CO 2 reaction on a ...
Recent a b i n i t i o calculations have focused on the minimum energy path region of this surface [...
The authors report extensive high-level ab initio studies of the first excited (Ã A2 \u27) state of ...
This thesis work investigates the potential energy surface and kinetic rate of the reaction OH + CO ...
The potential energy surface and chemical kinetics for the reaction of HO with CO, which is an impor...
A global potential energy surface (PES) for the ground electronic state of FH 2O is constructed base...
International audienceA new method is proposed to analytically represent the potential energy surfac...
Author Institution: Guelph-Waterloo Centre for Graduate Work in Chemistry and; Biochemistry, Univers...
International audienceA new method is proposed to analytically represent the potential energy surfac...
An accurate potential energy surface for H3+ + CO has been constructed by interpolation of ab initio...
A full-dimensional, global ab initio potential energy surface (PES) for the Ar-HOCO system is presen...
Dynamics calculations require the construction of a potential energy surface (PES). This presentatio...
A new global potential energy surface (PES) is being generated for O(P-3) + H2 yields OH + H. This s...
A global many-body expansion potential energy surface is reported for the electronic ground state of...
We report a new global potential energy surface of the HOCO system based on the F12 correction of un...
We report extensive quasi-classical trajectory calculations of the HO + CO → H + CO 2 reaction on a ...
Recent a b i n i t i o calculations have focused on the minimum energy path region of this surface [...
The authors report extensive high-level ab initio studies of the first excited (Ã A2 \u27) state of ...
This thesis work investigates the potential energy surface and kinetic rate of the reaction OH + CO ...
The potential energy surface and chemical kinetics for the reaction of HO with CO, which is an impor...
A global potential energy surface (PES) for the ground electronic state of FH 2O is constructed base...
International audienceA new method is proposed to analytically represent the potential energy surfac...
Author Institution: Guelph-Waterloo Centre for Graduate Work in Chemistry and; Biochemistry, Univers...
International audienceA new method is proposed to analytically represent the potential energy surfac...
An accurate potential energy surface for H3+ + CO has been constructed by interpolation of ab initio...
A full-dimensional, global ab initio potential energy surface (PES) for the Ar-HOCO system is presen...
Dynamics calculations require the construction of a potential energy surface (PES). This presentatio...
A new global potential energy surface (PES) is being generated for O(P-3) + H2 yields OH + H. This s...
A global many-body expansion potential energy surface is reported for the electronic ground state of...