Activation, Dehydrogenation, and Carbon-Carbon Coupling of Methane by Iridium Cations Studied by Infrared Multiple
Amanda R Bubas1, Samantha K Walker1, Frank J Wensink2,3
1Department of Chemistry, University of Utah, 315 S. 1400 E. Room 2020, Salt Lake City, Utah 84112, United States.
Abstract:
Products resulting from the sequential activation of one, two, three, and four methane molecules by atomic iridium cations were characterized by gas-phase infrared multiple photon dissociation spectroscopy and density functional theory (DFT) calculations. Iridium cations were generated using a laser ablation source and reacted with methane in a linear radiofrequency ion trap before mass analysis and spectroscopic interrogation in a Fourier transform ion cyclotron resonance mass spectrometer coupled to the free-electron laser for intracavity experiments (FELICE) beamline. Product ions were irradiated using infrared light over the 250-1500 cm-1 range. Comparisons between the experimental and DFT-calculated spectra enabled structural determination of the products formed. The observed products include HIrCH+, Ir(CH2)2+, HsIr(C3H5)+, and Ir(CH3)s(C3H5)+, where the subscript s denotes a syn orientation of the two ligands. Formation of the latter two products provides evidence for efficient C-H bond activation and subsequent C-C coupling on the atomic iridium cation.
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