Photodissociation of heptane isomers and relative ionization efficiencies of butyl and propyl radicals at 157 nm

We report an ion imaging and time-of-flight mass spectroscopy study of the photodissociation of a variety of heptane isomers using 157 nm dissociation and ionization. Time-of-flight mass spectra show that C(3)H(7) + C(4)H(9) is the dominant detected product channel following one-color 157 nm dissoci...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2009-06, Vol.11 (23), p.4777-4781
Hauptverfasser: Silva, Ruchira, Gichuhi, Wilson K, Doyle, Michael B, Winney, Alexander H, Suits, Arthur G
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container_issue 23
container_start_page 4777
container_title Physical chemistry chemical physics : PCCP
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creator Silva, Ruchira
Gichuhi, Wilson K
Doyle, Michael B
Winney, Alexander H
Suits, Arthur G
description We report an ion imaging and time-of-flight mass spectroscopy study of the photodissociation of a variety of heptane isomers using 157 nm dissociation and ionization. Time-of-flight mass spectra show that C(3)H(7) + C(4)H(9) is the dominant detected product channel following one-color 157 nm dissociation/ionization of heptanes. The results further allow determination of the relative ionization efficiencies of 1- and 2-butyl and propyl radicals at 157 nm. Momentum matching for the two radical products indicates that, for the C3-C4 products, neutral dissociation followed by ionization is the main source of the detected signals. The images show isotropic angular distributions and the translational energy distributions peak at very low energy, with only approximately 0.3 eV or 8% of the available energy appearing in translation. This is consistent with dissociation from the ground state or low-lying triplet states following non-radiative electronic relaxation.
doi_str_mv 10.1039/b823505h
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title Photodissociation of heptane isomers and relative ionization efficiencies of butyl and propyl radicals at 157 nm
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