Issue 3, 2019

Imaging the infrared multiphoton excitation and dissociation of propargyl chloride

Abstract

Infrared multiphoton excitation is combined with UV excitation and state-resolved probes of Cl(2P3/2), Cl*(2P1/2), and HCl to study the photochemistry of propargyl chloride. The results show evidence both of infrared multiphoton dissociation on the ground electronic state and infrared multiphoton excitation followed by UV dissociation. The results are interpreted with the aid of a full characterization of the stationary points on the ground state using ab initio methods, as well as our recent experimental and theoretical characterization of the UV photochemistry of the molecule. The data suggest elimination of HCl on the ground electronic state produces linear propadienylidene as a coproduct over a roaming-like transition state that accesses the Cl–H–C abstraction geometry. This identification is supported by separate chirped-pulse microwave studies in a quasi-uniform flow also reported here.

Graphical abstract: Imaging the infrared multiphoton excitation and dissociation of propargyl chloride

Supplementary files

Article information

Article type
Paper
Submitted
26 Oct 2018
Accepted
16 Dec 2018
First published
18 Dec 2018

Phys. Chem. Chem. Phys., 2019,21, 1528-1535

Author version available

Imaging the infrared multiphoton excitation and dissociation of propargyl chloride

C. D. Foley, S. T. Alavi, B. Joalland, B. M. Broderick, N. Dias and A. G. Suits, Phys. Chem. Chem. Phys., 2019, 21, 1528 DOI: 10.1039/C8CP06668J

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