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- W1566881142 abstract "A step-scan Fourier-transform spectrometer coupled with a multipass absorption cell was employed to monitor time-resolved infrared absorption of transient species produced upon irradiation at 248 nm of a flowing mixture of CH3SSCH3 and O2 at 260 K. Two transient bands observed with origins at 1397±1 and 1110±3 cm−1 are tentatively assigned to the antisymmetric CH3-deformation and OO stretching modes of syn-CH3SOO, respectively; the observed band contour indicates that the less stable anti-CH3SOO conformer likely contributes to these absorption bands. A band with an origin at 1071±1 cm−1, observed at a slightly later period, is assigned to the SO stretching mode of CH3SO, likely produced via secondary reactions of CH3SOO. These bands fit satisfactorily with vibrational wavenumbers and rotational contours simulated based on rotational parameters of syn-CH3SOO, anti-CH3SOO, and CH3SO predicted with density-functional theories B3LYP/aug-cc-pVTZ and B3P86/aug-cc-pVTZ. Two additional bands near 1170 and 1120 cm−1 observed at a later period are tentatively assigned to CH3S(O)OSCH3 and CH3S(O)S(O)CH3, respectively; both species are likely produced from self-reaction of CH3SOO. The production of SO2 via secondary reactions was also observed and possible reaction mechanism is discussed." @default.
- W1566881142 created "2016-06-24" @default.
- W1566881142 creator A5015444281 @default.
- W1566881142 creator A5057485693 @default.
- W1566881142 date "2010-11-09" @default.
- W1566881142 modified "2023-09-26" @default.
- W1566881142 title "Transient infrared spectra of CH3SOO and CH3SO observed with a step-scan Fourier-transform spectrometer" @default.
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- W1566881142 doi "https://doi.org/10.1063/1.3495765" @default.
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