4.6 Article

Double ionization of cycloheptatriene and the reactions of the resulting C7Hn2+ dications (n=6, 8) with xenon

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 13, Issue 41, Pages 18330-18338

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c1cp21634a

Keywords

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Funding

  1. Academy of Sciences of the Czech Republic [Z40550506]
  2. European Research Council
  3. Grant Agency of the Czech Republic [203/09/1223, P208/11/0446]
  4. Ministry of Education of the Czech Republic [MSM0021620857, OC10046]
  5. University of Trento
  6. Fondazione Trentino-Universita

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The formation and fragmentation of the molecular dication C7H82+ from cycloheptatriene (CHT) and the bimolecular reactivities of C7H82+ and C7H62+ are studied using multipole-based tandem mass spectrometers with either electron ionization or photoionization using synchrotron radiation. From the photoionization studies, an apparent double-ionization energy of CHT of (22.67 +/- 0.05) eV is derived, and the appearance energy of the most abundant fragment ion C7H62+, formed via H-2 elimination, is determined as (23.62 +/- 0.07) eV. Analysis of both the experimental data as well as results of theoretical calculations strongly indicate, however, that an adiabatic transition to the dication state is not possible upon photoionization of neutral CHT and the experimental value is just considered as an upper bound. Instead, an analysis via two different Born-Haber cycles suggests (IE)-I-2(CHT) - (21.6 +/- 0.2) eV. Further, the bimolecular reactivities of the C7Hn2+ dications (n = 6, 8), generated via double ionization of CHT as a precursor, with xenon as well as nitrogen lead, inter alia, to the formation of the organo-xenon dication C7H6Xe2+ and the corresponding nitrogen adduct C(7)H(6)N2(2+).

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