Dynamics of collisions between structured molecular species quickly become complex as molecules become large. Reactions of methane with halogen and oxygen atoms serve as model systems for polyatomic molecule chemical dynamics, and replacing the atomic reagent with a diatomic radical affords further insights. A new, full-dimensional potential energy surface for collisions between CN + CH<sub>4</sub> to form HCN + CH<sub>3</sub> is developed and then used to perform quasi-classical simulations of the reaction. Coupled-cluster energies serve as input to an empirical valence bonding (EVB) model, which provides an analytical function for the surface. Efficient sampling permits simulation of velocity-map ion images and exploration of dynamics ove...
In this thesis a reduced dimensionality quantum scattering model is applied to the study of polyatom...
The dynamics of the reaction OH('II)+HCN+CN("Z)+H20 has been investigated at different col...
Low-temperature partial oxidation of methane was investigated using reactive molecular dynamics (MD)...
Dynamics of collisions between structured molecular species quickly become complex as molecules beco...
Ion–molecule reaction between atomic oxygen anion (O−) and methane (CH4) has been system...
Well-established statistical approaches such as transition-state theory based on high-level calculat...
Nous avons étudié les collisions réactives O(1D) + CH4 et O(1D) + H2O d’intérêt atmosphérique et ast...
Electronic structure and direct dynamics calculations were used to study the potential energy surfac...
Well-established statistical approaches such as transition-state theory based on high-level calculat...
Abstract—Molecular beam and spectroscopic techniques allow detailed study of many dynamical properti...
Quasi-classical trajectory studies have been performed for the collision of internally excited metha...
The reactions of Cl atoms with three organic ethers, dimethyl ether (CHOCH), oxirane (c-CHO) and oxe...
Potential energy surfaces describing bimolecular collisions sensitively depend on the chemical funct...
Chlorine atoms react with a variety of organic molecules by abstraction of an H atom, making HCl and...
ABSTRACT: The dynamics of a combustion reaction, namely, O(3P) + CH4 → OH + CH3, is investigated wit...
In this thesis a reduced dimensionality quantum scattering model is applied to the study of polyatom...
The dynamics of the reaction OH('II)+HCN+CN("Z)+H20 has been investigated at different col...
Low-temperature partial oxidation of methane was investigated using reactive molecular dynamics (MD)...
Dynamics of collisions between structured molecular species quickly become complex as molecules beco...
Ion–molecule reaction between atomic oxygen anion (O−) and methane (CH4) has been system...
Well-established statistical approaches such as transition-state theory based on high-level calculat...
Nous avons étudié les collisions réactives O(1D) + CH4 et O(1D) + H2O d’intérêt atmosphérique et ast...
Electronic structure and direct dynamics calculations were used to study the potential energy surfac...
Well-established statistical approaches such as transition-state theory based on high-level calculat...
Abstract—Molecular beam and spectroscopic techniques allow detailed study of many dynamical properti...
Quasi-classical trajectory studies have been performed for the collision of internally excited metha...
The reactions of Cl atoms with three organic ethers, dimethyl ether (CHOCH), oxirane (c-CHO) and oxe...
Potential energy surfaces describing bimolecular collisions sensitively depend on the chemical funct...
Chlorine atoms react with a variety of organic molecules by abstraction of an H atom, making HCl and...
ABSTRACT: The dynamics of a combustion reaction, namely, O(3P) + CH4 → OH + CH3, is investigated wit...
In this thesis a reduced dimensionality quantum scattering model is applied to the study of polyatom...
The dynamics of the reaction OH('II)+HCN+CN("Z)+H20 has been investigated at different col...
Low-temperature partial oxidation of methane was investigated using reactive molecular dynamics (MD)...