RATE-CONSTANT CALCULATIONS ON FAST DIATOM DIATOM REACTIONS

A new method for calculating rate constants for fast reactions between two diatomic molecules is presented. The method involves applying a rotationally adiabatic capture theory with a simultaneous treatment of the rotational motions of both molecules. Results from calculations for dipole-dipole (SO...

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Main Authors: Stoecklin, T, Dateo, C, Clary, D
Format: Journal article
Language:English
Published: 1991
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author Stoecklin, T
Dateo, C
Clary, D
author_facet Stoecklin, T
Dateo, C
Clary, D
author_sort Stoecklin, T
collection OXFORD
description A new method for calculating rate constants for fast reactions between two diatomic molecules is presented. The method involves applying a rotationally adiabatic capture theory with a simultaneous treatment of the rotational motions of both molecules. Results from calculations for dipole-dipole (SO + OH) and dipole-quadrupole (CN + O2) interactions are compared with those obtained using more approximate methods based on various sudden approximations. Analytical formulae are derived for the rate constants in the limit of zero temperature, by using perturbation theory, and for high temperature, by using the infinite-order-sudden approximation. The importance of dispersion terms in the potential is also examined. An interesting prediction is that the rate constant for the fast reaction between two dipolar molecules is zero at temperature T = 0, increases as T1/6 to a maximum at a very low temperature (typically close to 10 K) and then decreases, eventually having a temperature dependence of T-1/6.
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spelling oxford-uuid:f0cb40dc-8834-4fb3-9698-f42265a7567d2022-03-27T11:50:53ZRATE-CONSTANT CALCULATIONS ON FAST DIATOM DIATOM REACTIONSJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f0cb40dc-8834-4fb3-9698-f42265a7567dEnglishSymplectic Elements at Oxford1991Stoecklin, TDateo, CClary, DA new method for calculating rate constants for fast reactions between two diatomic molecules is presented. The method involves applying a rotationally adiabatic capture theory with a simultaneous treatment of the rotational motions of both molecules. Results from calculations for dipole-dipole (SO + OH) and dipole-quadrupole (CN + O2) interactions are compared with those obtained using more approximate methods based on various sudden approximations. Analytical formulae are derived for the rate constants in the limit of zero temperature, by using perturbation theory, and for high temperature, by using the infinite-order-sudden approximation. The importance of dispersion terms in the potential is also examined. An interesting prediction is that the rate constant for the fast reaction between two dipolar molecules is zero at temperature T = 0, increases as T1/6 to a maximum at a very low temperature (typically close to 10 K) and then decreases, eventually having a temperature dependence of T-1/6.
spellingShingle Stoecklin, T
Dateo, C
Clary, D
RATE-CONSTANT CALCULATIONS ON FAST DIATOM DIATOM REACTIONS
title RATE-CONSTANT CALCULATIONS ON FAST DIATOM DIATOM REACTIONS
title_full RATE-CONSTANT CALCULATIONS ON FAST DIATOM DIATOM REACTIONS
title_fullStr RATE-CONSTANT CALCULATIONS ON FAST DIATOM DIATOM REACTIONS
title_full_unstemmed RATE-CONSTANT CALCULATIONS ON FAST DIATOM DIATOM REACTIONS
title_short RATE-CONSTANT CALCULATIONS ON FAST DIATOM DIATOM REACTIONS
title_sort rate constant calculations on fast diatom diatom reactions
work_keys_str_mv AT stoecklint rateconstantcalculationsonfastdiatomdiatomreactions
AT dateoc rateconstantcalculationsonfastdiatomdiatomreactions
AT claryd rateconstantcalculationsonfastdiatomdiatomreactions