Related Experiment Video
Updated: Jul 14, 2026

Photoelectron Imaging of Anions Illustrated by 310 Nm Detachment of F−
Published on: July 27, 2018
Photodissociation pathways of 1,1-dichloroacetone
Maria J Krisch1, M Justine Bell, Benjamin L Fitzpatrick
1The James Franck Institute and Department of Chemistry, The University of Chicago, Chicago, Illinois 60637, USA.
Abstract:
We present a comprehensive investigation of the dissociation dynamics following photoexcitation of 1,1-dichloroacetone (CH(3)COCHCl(2)) at 193 nm. Two major dissociation channels are observed: cleavage of a C-Cl bond to form CH(3)C(O)CHCl + Cl and elimination of HCl. The branching between these reaction channels is roughly 9:1. The recoil kinetic energy distributions for both C-Cl fission and HCl elimination are bimodal. The former suggests that some of the radicals are formed in an excited electronic state. A portion of the CH(3)C(O)CHCl photoproducts undergo secondary dissociation to give CH(3) + C(O)CHCl. Photoelimination of Cl(2) is not a significant product channel. A primary C-C bond fission channel to give CH(3)CO + CHCl(2) may be present, but this signal may also be due to a secondary dissociation. Data from photofragment translational spectroscopy with electron impact and photoionization detection, velocity map ion imaging, and UV-visible absorption spectroscopy are presented, along with G3//B3LYP calculations of the bond dissociation energetics.
More Related Videos
Related Concept Videos
Mass Spectrometry: Cycloalkene Fragmentation
Mass Spectrometry: Aldehyde and Ketone Fragmentation
Oxidative Cleavage of Alkenes: Ozonolysis
Ozone is a symmetrical bent molecule stabilized by a resonance structure.
Cycloaddition Reactions: MO Requirements for Photochemical Activation
E1 Reaction: Kinetics and Mechanism
Radical Formation: Homolysis

