Spectroscopic Identification of the Carbyne Hydride Structure of the Dehydrogenation Product of Methane Activation by Osmium Cations

被引:23
|
作者
Armentrout, P. B. [1 ]
Kuijpers, Stach E. J. [2 ]
Lushchikova, Olga, V [2 ]
Hightower, Randy L. [1 ]
Boles, Georgia C. [1 ]
Bakker, Joost M. [2 ]
机构
[1] Univ Utah, Dept Chem, 315 South 1400 East,Room 2020, Salt Lake City, UT 84112 USA
[2] Radboud Univ Nijmegen, Inst Mol & Mat, FELIX Lab, Toernooiveld 7c, NL-6525 ED Nijmegen, Netherlands
基金
美国国家科学基金会;
关键词
Spectroscopy; Intracavity free electron laser; Infrared multiple photon dissociation; Rotational band structure; GUIDED-ION-BEAM; 3RD-ROW TRANSITION-METAL; POTENTIAL-ENERGY SURFACE; H-BOND ACTIVATION; GAS-PHASE; C-H; INFRARED-SPECTROSCOPY; THERMOCHEMISTRY; CH4; ENERGETICS;
D O I
10.1007/s13361-018-1929-7
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The present work explores the structures of species formed by dehydrogenation of methane (CH4) and perdeuterated methane (CD4) by the 5d transition metal cation osmium (Os+). Using infrared multiple photon dissociation (IRMPD) action spectroscopy and density functional theory (DFT), the structures of the [Os,C,2H](+) and [Os,C,2D](+) products are explored. This study complements previous work on the related species formed by dehydrogenation of methane by four other 5d transition metal cations (M+ = Ta+, W+, Ir+, and Pt+). Osmium cations are formed in a laser ablation source, react with methane pulsed into a reaction channel downstream, and the resulting products spectroscopically characterized through photofragmentation using the Free-Electron Laser for IntraCavity Experiments (FELICE) in the 300-1800 cm(-1) range. Photofragmentation was monitored by the loss of H-2/D-2. Comparison of the experimental spectra and DFT calculated spectra leads to identification of the ground state carbyne hydride, HOsCH+ ((2)A') as the species formed, as previously postulated theoretically. Further, a full description of the systematic spectroscopic shifts observed for deuterium labeling of these complexes, some of the smallest systems to be studied using IRMPD action spectroscopy, is achieved. A full rotational contour analysis explains the observed linewidths as well as the observation of doublet structures in several bands, consistent with previous observations for HIrCH+ ((2)A').
引用
收藏
页码:1781 / 1790
页数:10
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