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Reduced Dimensionality Quantum Dynamics of CH<sub>3</sub> + CH<sub>4</sub> → CH<sub>4</sub> + CH<sub>3</sub>: Symmetric Hydrogen Exchange on an Ab Initio Potential
28
Citations
33
References
2009
Year
Quantum DynamicEngineeringMany-body Quantum PhysicComputational ChemistryChemistrySpectra-structure CorrelationQuantum Mechanical PropertyHyperspherical CoordinatesQuantum SciencePhysicsAb Initio PotentialAtomic PhysicsPhysical ChemistryQuantum TunnelingQuantum ChemistryCondensed Matter TheoryAb-initio MethodNatural SciencesApplied PhysicsDimensionality Quantum DynamicsSymmetric Hydrogen ExchangeSpectator Modes
The symmetric title reaction CH(3) + CH(4) --> CH(4) + CH(3) is studied using quantum scattering theory. Quantum dynamics calculations are performed in hyperspherical coordinates with a two-dimensional effective potential energy surface consisting of an analytical 18-parameter double Morse function fit to ab initio data at the CCSD(T)/cc-pVTZ//MP2/cc-pVTZ level of theory. Spectator modes are treated adiabatically by inclusion of projected zero-point energy corrections in the effective potential. The close-coupled equations are solved via R-matrix propagation. Energy and J-shifted thermal rate constants are compared to experimental data and highlight the importance of quantum tunneling. Oscillating reactivity and metastable bound state resonances are observed in the cumulative and state-to-state reaction probabilities. State-to-state differential and initial state-selected integral cross sections are presented and discussed. Primary and secondary kinetic isotope effects for two symmetric deuterated variants of the title reaction are also presented.
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