Reactivity Trends in the Gas Phase Addition of Acetylene to N-protonated Aryl Radical Cations

13 October 2020, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

A key step in gas-phase polycyclic aromatic hydrocarbon (PAH) formation involves the addition of acetylene (or other alkyne) to σ-type aromatic radicals, with successive additions yielding more complex PAHs. A similar process can happen for N- containing aromatics. In cold diffuse environments, such as the interstellar medium, rates of radical addition may be enhanced when the σ-type radical is charged. This paper investigates the gas-phase ion-molecule reactions of acetylene with nine aromatic distonic σ-type radical cations derived from pyridinium (Pyr), anilinium (Anl) and benzonitrilium (Bzn) ions. Three isomers are studied in each case (radical sites at the ortho, meta and para positions). Using a room temperature ion trap, second-order rate coefficients, product branching ratios and reaction efficiencies are reported.

Keywords

gas-phase
ion trap mass spectrometry
laser photolysis
Distonic
Radical Cation
Computational Chemistry
Kinetics
PAH formation

Supplementary materials

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AcetyleneP1Sup Archive
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