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Title: UV Photodissociation Dynamics of the CH3CHOO Criegee Intermediate: Action Spectroscopy and Velocity Map Imaging of O-Atom Products

Journal Article · · Journal of Physical Chemistry. A, Molecules, Spectroscopy, Kinetics, Environment, and General Theory

We report that UV excitation of jet-cooled CH3CHOO on the B1A'–X1A' transition results in dissociation to two spin-allowed product channels: CH3CHO X1A' + O 1D and CH3CHO a3A" + O 3P. The O 1D and O 3P products are detected using 2 + 1 REMPI at 205 and 226 nm, respectively, for action spectroscopy and velocity map imaging studies. The O 1D action spectrum closely follows the previously reported UV absorption spectrum for jet-cooled CH3CHOO [Beames et al. J. Chem. Phys. 2013, 138, 244307]. Velocity map images of the O 1D products following excitation of CH3CHOO at 305, 320, and 350 nm exhibit anisotropic angular distributions indicative of rapid (ps) dissociation, along with broad and unstructured total kinetic energy (TKER) distributions that reflect the internal energy distribution of the CH3CHO X1A' coproducts. The O 3P action spectrum turns on near the peak of the UV absorption spectrum (ca. 324 nm) and extends to higher energy with steadily increasing O 3P yield. Excitation of CH3CHOO at 305 nm, attributed to absorption of the more stable syn-conformer, also results in an anisotropic angular distribution of O 3P products arising from rapid (ps) dissociation, but a narrower TKER distribution since less energy is available to the CH3CHO a3A" + O 3P products. The threshold for the higher energy CH3CHO a3A" + O 3P product channel is determined to be ca. 88.4 kcal mol–1 from the termination of the TKER distribution and the onset of the O 3P action spectrum. This threshold is combined with the singlet-triplet spacings of O atoms and acetaldehyde to establish the dissociation energy for syn-CH3HOO X1A' to the lowest spin-allowed product channel, CH3CHO X1A' + O 1D, of ≤55.9 ± 0.4 kcal mol–1. Lastly, a harmonic normal-mode analysis is utilized to identify the vibrational modes of CH3CHO likely to be excited upon dissociation into the two product channels.

Research Organization:
Univ. of Pennsylvania, Philadelphia, PA (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
Grant/Contract Number:
FG02-87ER13792
OSTI ID:
1598535
Journal Information:
Journal of Physical Chemistry. A, Molecules, Spectroscopy, Kinetics, Environment, and General Theory, Vol. 119, Issue 30; ISSN 1089-5639
Publisher:
American Chemical SocietyCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 21 works
Citation information provided by
Web of Science

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Cited By (6)

Catalytic effect of water, water dimer, water trimer, HCOOH, H 2 SO 4 , CH 3 CH 2 COOH and HN(NO 2 ) 2 on the isomerisation of HN(NO 2 ) 2 to O 2 NNN(O)OH: a mechanism study journal March 2017
Catalytic effect of water, water dimer, HCOOH and H 2 SO 4 on the isomerisation of HON(O)NNO 2 to ON(OH)NNO 2 : a mechanism study journal September 2018
Unimolecular dissociation dynamics of vibrationally activated CH3CHOO Criegee intermediates to OH radical products journal April 2016
Electronic spectroscopy of methyl vinyl ketone oxide: A four-carbon unsaturated Criegee intermediate from isoprene ozonolysis journal December 2018
Communication: Thermal unimolecular decomposition of syn-CH 3 CHOO: A kinetic study journal October 2016
Unimolecular decay dynamics of Criegee intermediates: Energy-resolved rates, thermal rates, and their atmospheric impact journal December 2019

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