This work uses velocity map imaging to determine the barrier height for acetyl radical, CH3CO, dissociation to CH3 + CO. Photodissociation of acetyl chloride at 235 nm generates acetyl radicals with an internal energy distribution spanning this barrier. We determine the velocity and internal energy distribution of all nascent acetyl radicals, stable and unstable, by measuring the velocities of the Cl(2P3/2) and Cl(2P1/2) cofragments. These Cl cofragments are detected with 2 + 1 resonance-enhanced multiphoton ionization (REMPI) in a spin-orbit branching ratio Cl(2P3/2):Cl(2P1/2) of 3.3 ( 0.2. Using 157 nm photoionization, we then detect the recoil velocities of the energetically stable acetyl radicals. The radicals and momentum matched Cl at...
The photodissociation of the allyl radical (CH2CH–CH2˙) following excitation between 216 and 243 nm ...
Velocity map ion imaging (VMI) is a powerful experimental technique used to investigate the photodis...
Author Institution: Argonne National Laboratory, Chemical Sciences and Engineering Division, Argonne...
The photodissociation dynamics of acetaldehyde in the radical channel CH3+FICO has been reinvestigat...
Photofragment translational spectroscopy was used to study the photodissociation of propionyl chlori...
8 pags., 4 figs., 2 tabs.The C–C bond dissociation channel of the ethyl (CH3–CH2) radical is investi...
This study examines the 248 nm photodissociation of methyl hypochlorite (CH3OCl), a molecule that se...
Time-resolved ion imaging measurements have been performed to explore the photochemistry of acetalde...
We investigate the unimolecular dissociation of the vinoxy radical (CH<sub>2</sub>CHO) prepared with...
This work investigates the unimolecular dissociation of the methoxycarbonyl, CH3OCO, radical. Photol...
The first is via direct dissociation and the second likely involves a barrier slowing down dissociat...
Velocity-map imaging studies are reported for the photodissociation of acetaldehyde over a range of ...
International audienceState-of-the-art electronic structure calculations (MR-CISD) are used to map f...
Velocity-map imaging studies are reported for the photodissociation of acetaldehyde over a range of ...
This dissertation describes several three-body dissociations and the photodissociation of methyl rad...
The photodissociation of the allyl radical (CH2CH–CH2˙) following excitation between 216 and 243 nm ...
Velocity map ion imaging (VMI) is a powerful experimental technique used to investigate the photodis...
Author Institution: Argonne National Laboratory, Chemical Sciences and Engineering Division, Argonne...
The photodissociation dynamics of acetaldehyde in the radical channel CH3+FICO has been reinvestigat...
Photofragment translational spectroscopy was used to study the photodissociation of propionyl chlori...
8 pags., 4 figs., 2 tabs.The C–C bond dissociation channel of the ethyl (CH3–CH2) radical is investi...
This study examines the 248 nm photodissociation of methyl hypochlorite (CH3OCl), a molecule that se...
Time-resolved ion imaging measurements have been performed to explore the photochemistry of acetalde...
We investigate the unimolecular dissociation of the vinoxy radical (CH<sub>2</sub>CHO) prepared with...
This work investigates the unimolecular dissociation of the methoxycarbonyl, CH3OCO, radical. Photol...
The first is via direct dissociation and the second likely involves a barrier slowing down dissociat...
Velocity-map imaging studies are reported for the photodissociation of acetaldehyde over a range of ...
International audienceState-of-the-art electronic structure calculations (MR-CISD) are used to map f...
Velocity-map imaging studies are reported for the photodissociation of acetaldehyde over a range of ...
This dissertation describes several three-body dissociations and the photodissociation of methyl rad...
The photodissociation of the allyl radical (CH2CH–CH2˙) following excitation between 216 and 243 nm ...
Velocity map ion imaging (VMI) is a powerful experimental technique used to investigate the photodis...
Author Institution: Argonne National Laboratory, Chemical Sciences and Engineering Division, Argonne...