Can topological indices be used to predict gas-phase rate coefficients of importance to tropospheric chemistry? Reactions of alkenes with OH, NO3 and O3

Max R. McGillen, Jonny Crosier, Carl J. Percival, Gabriela Sanchez-Reyna, Dudley E. Shallcross

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Rate coefficients for the gas-phase reactions of unsaturated hydrocarbons with OH, NO3 and O3 are of vital importance to atmospheric modelling. Many of these rate coefficients are unknown - possibly resulting from the variety of these compounds and the inherent expense of deriving these data experimentally - and a reliable method for their prediction would therefore be of value to such models. This study presents a method for estimating rate coefficients for C2-C10 olefins. Measured rate coefficients for the reaction of unsaturated hydrocarbons with OH and NO3 radicals and O3 are correlated with the Randić topological descriptor and an established correlation parameter, i.e. ionization potentials calculated using the frontier molecular orbital (FMO) approach. Although the ionization potential method produces better correlations in general, OH correlations of aliphatic species, subdivided into groups of varying total number of primary (1°), secondary (2°) and tertiary (3°) carbon atoms (∑ x °x) produced several new trends with the Randić index that were not present in the ionization potential correlations. Strong correlation was observed with a Randić-type index optimized to include a term for side chain length (∑ x °x). The presence of strong relationships, made predictable by molecular constitution, makes topological descriptors a useful and accessible tool for estimating rate coefficients for the reactions of OH with aliphatic species. This study indicates that alkene reactivity is affected strongly by constitution and that abstraction as well as addition may be important for some classes of compound. © 2006 Elsevier Ltd. All rights reserved.
    Original languageEnglish
    Pages (from-to)2035-2044
    Number of pages9
    JournalChemosphere
    Volume65
    Issue number11
    DOIs
    Publication statusPublished - Dec 2006

    Keywords

    • Alkenes
    • Kinetics
    • QSARs
    • Topology

    Fingerprint

    Dive into the research topics of 'Can topological indices be used to predict gas-phase rate coefficients of importance to tropospheric chemistry? Reactions of alkenes with OH, NO3 and O3'. Together they form a unique fingerprint.

    Cite this