Influence of Variations of the Potential-Energy Surface on Exchange-Reaction Probabilities
- 1 March 1972
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 56 (5) , 2092-2101
- https://doi.org/10.1063/1.1677503
Abstract
Accurate quantum‐mechanical reaction probabilities for the collinear reaction on a series of parametric Wall—Porter potential surfaces have been determined by solving the relevant time‐independent Schrödinger equation using a newly developed close‐coupling technique. The effects of variations of (1) the total energy, (2) the classical activation energy (barrier height), (3) the curvature of the reaction path, and (4) the slope and ``width'' of the potential barrier along the reaction path on various attributes of the reaction are found by systematically changing selected parameters of the surface. The reaction attributes of chief interest are (1) the gross structure of the reaction probability curves (as a function of total energy), (2) the effective threshold for reaction, and (3) the degree of vibrational excitation of the product. The various effects induced in the reaction attributes by variations of the potential surface parameters are correlated and discussed. Several qualitative conclusions are drawn.
Keywords
This publication has 19 references indexed in Scilit:
- Comparison of Accurate Quantum-Mechanical Probabilities with Classical and Transition-State Theory Results for the Collinear Exchange Reaction H + H2 → H2 + HThe Journal of Chemical Physics, 1971
- Close-Coupling Technique for Chemical Exchange Reaction of the Type A+BC→AB+C. H+H2→H2+HThe Journal of Chemical Physics, 1971
- Quantum Solution of Collinear Reactive Systems: H+Cl2→HCl+ClThe Journal of Chemical Physics, 1969
- Classical Calculations of Linear Reactive Systems: H+Cl2→HCl+ClThe Journal of Chemical Physics, 1969
- Solvable Quantum-Mechanical Model of Three-Body Rearrangement ScatteringThe Journal of Chemical Physics, 1969
- Classical Probabilities of Reaction and Transmission Coefficients for Isotopic Reactions of the Type H+H2=H2+HThe Journal of Chemical Physics, 1968
- Permeabilities and Transmission Coefficients for Various Isotopic Reactions of the Type H + H2=H2 + HThe Journal of Chemical Physics, 1968
- Molecular Schrödinger Equation. VI. Results for H3 and Other Simple SystemsThe Journal of Chemical Physics, 1967
- Energy Surface for the Linear H3 SystemThe Journal of Chemical Physics, 1965
- Configuration-Interaction Calculation of H3 and H2The Journal of Chemical Physics, 1965