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Test of variational transition state theory against accurate quantal results for a reaction with very large reaction-path curvature and a low barrier
30
Citations
22
References
1984
Year
Quantum DynamicEngineeringComputational ChemistryThermal EnergyLarge Reaction-path CurvatureThermodynamicsAccurate Quantum MechanicsQuantum SciencePhysicsLow BarrierNon-perturbative QcdAccurate Quantal ResultsQuantum ChemistryNatural SciencesApplied PhysicsDisordered Quantum SystemCollinear Reaction I+hi→ih+iReaction ProcessChemical KineticsThermal Rate Constants
We present three sets of calculations for the thermal rate constants of the collinear reaction I+HI→IH+I: accurate quantum mechanics, conventional transition state theory (TST), and variational transition state theory (VTST). This reaction differs from previous test cases in that it has very large reaction-path curvature but hardly any tunneling. TST overestimates the accurate results by factors of 2×1010, 2×104, 57, and 19 at 40, 100, 300, and 1000 K, respectively. At these same four temperatures the ratios of the VTST results to the accurate quantal ones are 0.3, 0.8, 1.1, and 1.4, respectively. We conclude that the variational transition states are meaningful, even though they are computed from a reaction-path Hamiltonian with large curvature, which is the most questionable case.
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