Investigation of unimolecular decomposition and isomerisation reactions of some metastable carboxonium ions in the gas phase
Abstract
The C3H5O+ cations generated from CH2![[double bond, length as m-dash]](https://www.rsc.org/images/entities/char_e001.gif) CH·CH(OH)CH3, CH2
CH·CH(OH)CH3, CH2![[double bond, length as m-dash]](https://www.rsc.org/images/entities/char_e001.gif) CH·O·CH2·CH3, [graphic omitted] and CH3·[graphic omitted] have been shown to isomerise to the same structure or mixture of structures before fragmentation with a rate constant in the region 105–106 sec.–1. However, the C3H5O+ ion generated from CH3·CH2·CO2Me remains structurally distinct. Protonated carboxylic acid ions generated from the n-butyl esters of acrylic, crotonic, and propionic acids have been shown to remain distinct from isomeric ions before dehydration to the corresponding acylium ions in a metastable transition.
CH·O·CH2·CH3, [graphic omitted] and CH3·[graphic omitted] have been shown to isomerise to the same structure or mixture of structures before fragmentation with a rate constant in the region 105–106 sec.–1. However, the C3H5O+ ion generated from CH3·CH2·CO2Me remains structurally distinct. Protonated carboxylic acid ions generated from the n-butyl esters of acrylic, crotonic, and propionic acids have been shown to remain distinct from isomeric ions before dehydration to the corresponding acylium ions in a metastable transition.
 
                



 Please wait while we load your content...
                                            Please wait while we load your content...
                                        