4.6 Article

Dissociation routes of protonated toluene probed by infrared spectroscopy in the gas phase

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JOURNAL OF PHYSICAL CHEMISTRY A
卷 110, 期 27, 页码 8346-8353

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AMER CHEMICAL SOC
DOI: 10.1021/jp056962f

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The structures of C7H9+ ions generated by protonation of toluene are investigated by means of gas-phase infrared spectroscopy in conjunction with labeling experiments and complementary mass spectrometric studies. In full consistency with previous studies, the unimolecular as well as the multiphoton-induced dissociation of mass-selected C7H9+ ions lead to losses of molecular hydrogen and methane. Labeling data clearly imply the occurrence of skeletal rearrangements of protonated toluene to isomeric structures in the course of fragmentation. Complementary reactivity studies indicate, however, that the C7H7+ ions generated upon dehydrogenation of C7H9+ bear the benzylium structure, rather than that of the more stable tropylium ion. Combination of labeling data and extensive theoretical studies lead to a scheme for the fragmentation of protonated toluene, which can account for all experimental findings reasonably well. As far as infrared spectroscopy of gaseous ions is concerned, the present results confirm the structural predictions derived from theory and provide evidence for the existence of protonated cycloheptatriene but also pose some questions about the comparability of intensities in multiphoton dissociation and linear absorption spectra.

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