Publication | Open Access
Photodissociation dynamics of the methyl perthiyl radical at 248 and 193 nm using fast-beam photofragment translational spectroscopy
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Citations
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References
2016
Year
Dissociation ChannelState Ch3sChemistryElectronic Excited StatePhotosynthesisPhotophysical PropertyHealth SciencesPhotochemistryPhysicsMechanistic PhotochemistryRadical (Chemistry)Physical ChemistryQuantum ChemistryPhotodissociation DynamicsPhotochromismDissociation WavelengthExcited State PropertyNatural SciencesSpectroscopyMethyl Perthiyl RadicalSpectroscopic Method
The photodissociation dynamics of the methyl perthiyl radical (CH3SS) have been investigated using fast-beam coincidence translational spectroscopy. Methyl perthiyl radicals were produced by photodetachment of the CH3SS(-) anion followed by photodissociation at 248 nm (5.0 eV) and 193 nm (6.4 eV). Photofragment mass distributions and translational energy distributions were measured at each dissociation wavelength. Experimental results show S atom loss as the dominant (96%) dissociation channel at 248 nm with a near parallel, anisotropic angular distribution and translational energy peaking near the maximal energy available to ground state CH3S and S fragments, indicating that the dissociation occurs along a repulsive excited state. At 193 nm, S atom loss remains the major fragmentation channel, although S2 loss becomes more competitive and constitutes 32% of the fragmentation. The translational energy distributions for both channels are very broad at this wavelength, suggesting the formation of the S2 and S atom products in several excited electronic states.
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