Publication | Open Access
Experimental tests of reaction rate theory: Mu+H2 and Mu+D2
57
Citations
28
References
1987
Year
Chemical ThermodynamicsMu ReactionEngineeringPhysicsReaction ProcessNatural SciencesBimolecular Rate ConstantsThermal Chemical ReactionsPhysical ChemistryReactivity (Chemistry)Reaction Rate TheoryHydrogenQuantum ChemistryChemistryMolecular ChemistryChemical Kinetics
Bimolecular rate constants for the thermal chemical reactions of muonium (Mu) with hydrogen and deuterium—Mu+H2→MuH+H and Mu+D2→MuD+D—over the temperature range 473–843 K are reported. The Arrhenius parameters and 1σ uncertainties for the H2 reaction are log A (cm3 molecule−1 s−1)=−9.605±0.074 and Ea =13.29±0.22 kcal mol−1, while for D2 the values are −9.67±0.12 and 14.73±0.40, respectively. These results are significantly more precise than those reported earlier by Garner et al. For the Mu reaction with H2 our results are in excellent agreement with the 3D quantum mechanical calculations of Schatz on the Liu–Siegbahn–Truhlar–Horowitz potential surface, but the data for both reactions compare less favorably with variational transition-state theory, particularly at the lower temperatures.
| Year | Citations | |
|---|---|---|
Page 1
Page 1