The Journal of Chemical Physics · 1964 · 68 citations · 9 references
Methyl HalidesEngineeringChemistryIon ProcessSpectra-structure CorrelationChemical EngineeringFragment IonsElectronic StatesAppearance PotentialsIon EmissionBiophysicsPhysical ChemistryQuantum ChemistryHydrogenMolecular ChemistryPotential Difference MethodIon MobilityMass SpectrometryMedicineChemical KineticsMolecular FragmentationIonization-efficiency CurvesIon Structure
The retarding potential difference method has been used to measure ionization efficiency curves of CH3X+ (X=H, F, Cl, Br, I), CH3+, and X+ from methane and the methyl halides in a time-of-flight mass spectrometer. Discontinuities between linear segments of the ionization efficiency curves are interpreted as appearance potentials (A.P.) of electronic states or processes. For all CH3+, A.P.'s occur at 1.1, 1.7, 2.7, and about 3.4 eV above onset in the ion pair region. Empirical knowledge of this structure makes it possible to identify the A.P. for the ion—neutral pair, CH3+—X, in their ground states. Combining these data and the A.P.'s for X+/CH3X gives the ionization potential for CH3 and the bond dissociation energies, D(CH3—X).
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Ionization in a Mass Spectrometer by Monoenergetic Electrons
R. E. Fox, W. M. Hickam, D.J. Grove et al. · Review of Scientific Instruments · 1955 · 253 citations
Electrical Engineering, Engineering, Ionization Probability +15
Ionization Processes in CCl4 and SF6 by Electron Beams
R. E. Fox, R. K. Curran · The Journal of Chemical Physics · 1961 · 64 citations
Engineering, Physics, Electron Beam +14