Structures of the Dehydrogenation Products of Methane Activation by 5d Transition Metal Cations V. J. F. Lapoutre, † B. Redlich, ‡ A. F. G. van der Meer,

Slides:



Advertisements
Similar presentations
Understanding Complex Spectral Signatures of Embedded Excess Protons in Molecular Scaffolds Andrew F. DeBlase Advisor: Mark A. Johnson 68 th Internatinal.
Advertisements

Vibrational Spectroscopy of Cold Molecular Ions Ncamiso Khanyile Ken Brown Lab School of Chemistry and Biochemistry June 2014.
Robert C. Dunbar Case Western Reserve University Nick C. Polfer, Jos Oomens FOM-Institute for Plasma Physics Structure Investigation of Cation-Pi Complexes.
Mass Spectrometry Introduction:
17.1 Mass Spectrometry Learning Objectives:
Ryunosuke Shishido, Asuka Fujii Department of Chemistry, Graduate School of Science, Tohoku University, Japan Jer-Lai Kuo Institute of Atomic and Molecular.
Infrared Spectroscopy of Doubly-Charged Metal-Water Complexes
La-Mediated Bond Activation, Coupling, and Cyclization of 1,3-butadiene Probed by Mass-Analyzed Threshold Ionization Spectroscopy Department of Chemistry.
VIBRONIC SPECTROSCOPY OF THE PHENYLCYANOMETHYL RADICAL 6/23/11 1 DEEPALI N. MEHTA, NATHANAEL M. KIDWELL, JOSEPH A. KORN, AND TIMOTHY S. ZWIER 66 th International.
Infrared spectroscopy of Li(methylamine) n (NH 3 ) m clusters Nitika Bhalla, Luigi Varriale, Nicola Tonge and Andrew Ellis Department of Chemistry University.
1 University of Petra Faculty of Science & Arts Department of Chemistry Seminar I.R Spectroscopy By Firas Al-ouzeh Supervisor : Nuha I. Swidan Summer 2007.
Structure Determination of Silicon Clusters in the Gas Phase A Vibrational Spectroscopy and DFT Investigation Jonathan T. Lyon, Philipp Gruene, Gerard.
IR spectroscopy of first-row transition metal clusters and their complexes with simple molecules FELIX facility, Radboud University Nijmegen, the Netherlands.
1 Li Xiao and Lichang Wang Department of Chemistry & Biochemistry Southern Illinois University Carbondale The Structure Effect of Pt Clusters on the Vibrational.
Anion Photoelectron Spectroscopic Studies of NbC 4 H 4 ‾, NbC 6 H 6 ‾ and NbC 6 H 4 ‾ Products of Flow Tube Reactions of Niobium with Butadiene Melissa.
Structures and Spin States of Transition-Metal Cation Complexes with Aromatic Ligands Free Electron Laser IRMPD Spectra Robert C. Dunbar Case Western Reserve.
Laboratory for Optical Physics and Engineering MOLECULAR SPECTROSCOPY OF RARE EARTH AND METAL-HALIDE MOLECULES International Symposium on Molecular Spectroscopy.
Theoretical Study of Photodissociation dynamics of Hydroxylbenzoic Acid Yi-Lun Sun and Wei-Ping Hu* Department of Chemistry and Biochemistry, National.
Modelling Metal Foam Formation in Helium Nanodroplets David McDonagh, The Centre for Interdisciplinary Science Project Supervisor: Professor Andrew Ellis,
Free O  H Anharmonic Stretching Motions in H  (CH 3 OH) 1  3 with or without Attached Argon 2014/06/19, 10:56-11:11 AM Hsiao-Han Chuang 1 Jer-Lai Kuo.
Electronic spectroscopy of Li(NH 3 ) 4 Nitika Bhalla, Luigi Varriale, Nicola Tonge and Andrew Ellis Department of Chemistry University of Leicester UK.
 In condensed phases, metal ions like Na +, K +. Ca 2+ normally bind peptides at exposed Lewis-basic sites. But active metal ions can deprotonate the.
Infrared Photodissociation Spectroscopy of Silicon Carbonyl Cations
PROTON TRANSFER IN NEUTRAL PEPTIDES EXAMINED BY CONFORMATIONAL SPECIFIC IR/UV SPECTROSCOPY Sander Jaeqx 67th International Symposium on Molecular Spectroscopy.
OSU Conference 2010: Symposium on Metal Containing Molecules
Introduction Methods Conclusions Acknowledgement The geometries, energies, and harmonic vibrational frequencies of complexes studied were calculated using.
Pulsed Field Ionization-Zero Electron Kinetic Energy (PFI-ZEKE) Spectroscopy of Sc-C 6 H 5 X(X=F,CH 3,OH) Complexes Changhua Zhang, Serge A. Krasnokutskia.
Robert C. Dunbar Case Western Reserve University Nicolas Polfer University of Florida Jeffrey Steill, Jos Oomens FOM Institute for Plasma Physics $$$ FOM,
Nick C. Polfer, Jos Oomens FOM-Institute for Plasmaphysics Robert C. Dunbar Case Western Reserve University Conformations of Metal Cation/Tryptophan Complexes.
Electronic Spectroscopy of Palladium Dimer (Pd 2 ) 68th OSU International Symposium on Molecular Spectroscopy Yue Qian, Y. W. Ng and A. S-C. Cheung Department.
Electronic Transitions of Palladium Monoboride and Platinum Monoboride Y.W. Ng, H.F. Pang, Y. S. Wong, Yue Qian, and A. S-C. Cheung Department of Chemistry.
Tunable Infrared Laser Desorption/Ionization Time-of-Flight Mass Spectroscopy of Thin Films Timothy Cheng, Michael Duncan Department of Chemistry, University.
Ling Jiang Department of Molecular Physics Fritz-Haber-Institut der Max-Planck-Gesellschaft Faradayweg 4-6, Berlin, Germany 65th International Symposium.
SPECTROSCOPY OF AND PHOTOINDUCED ELECTRON TRANSFER IN THE COMPLEXES OF C 2 H 4 WITH I AND I 2 Lisa George, Aimable Kalume, and Scott A. Reid Department.
Infrared Spectroscopy & Structures of Mass-Selected Rhodium Carbonyl & Rhodium Dinitrogen Cations Heather L. Abbott, 1 Antonio D. Brathwaite 2 and Michael.
Infrared Photodissociation Spectroscopy of TM + (N 2 ) n (TM=V,Nb) Clusters E. D. Pillai, T. D. Jaeger, M. A. Duncan Department of Chemistry, University.
Robert C. Dunbar Case Western Reserve University Nicolas Polfer University of Florida Giel Berden FOM Institute for Plasma Physics Jos Oomens FOM Institute.
E. Gonzalez, C.M.L. Rittby, and W.R.M. Graham
P. D. CARNEGIE, B. BANDYOPADHYAY AND M. A. DUNCAN
Vibrational Predissociation Spectra in the Shared Proton Region of Protonated Formic Acid Wires: Characterizing Proton Motion in Linear H-Bonded Networks.
Infrared Spectra of Chloride- Fluorobenzene Complexes in the Gas Phase: Electrostatics versus Hydrogen Bonding Holger Schneider OSU International Symposium.
Spectroscopy Chemistry 3.2: Demonstrate understanding of spectroscopic data in chemistry (AS 91388)
Antonio D. Brathwaite University of the Virgin Islands, St Thomas, USVI.
1Department of Chemistry, Wayne State University, Detroit, MI, 48202
12. Structure Determination: Mass Spectrometry and Infrared Spectroscopy Based on McMurry’s Organic Chemistry, 6 th edition.
Infrared Resonance Enhanced Photodissociation (IR- REPD) Spectroscopy used to determine solvation and structure of Ni + (C 6 H 6 ) n and Ni + (C 6 H 6.
Observation of Isomer Trapping in Li + (H 2 O) 4 Ar Cluster Ions Dorothy J. Miller and James M. Lisy Department of Chemistry University of Illinois at.
Infrared Resonance Enhanced Photodissociation of Au + (CO) n Complexes in the Gas Phase Joe Velasquez, III, E. Dinesh Pillai and Michael A. Duncan Department.
Hydrogen-bond between the oppositely charged hydrogen atoms It was suggested by crystal structure analysis. A small number of spectroscopic studies have.
Development of a cavity ringdown spectrometer for measuring electronic states of Be clusters JACOB STEWART, MICHAEL SULLIVAN, MICHAEL HEAVEN DEPARTMENT.
Main Title Manori Perera 1 and Ricardo Metz University of Massachusetts Amherst 64 th International Symposium on Molecular Spectroscopy June 25th, 2009.
Gas Phase Infrared Spectroscopy of Protonated Species Department of Chemistry University of Georgia Athens Georgia,
PULSED-FIELD IONIZATION ELECTRON SPECTROSCOPY OF LANTHANIDE (Gd, Lu) BENZENE COMPLEXES M. ROUDJANE, S. KUMARI and D.-S. YANG University of Kentucky Lexington,
IR photodepletion and REMPI spectroscopy of Li(NH 2 Me) n clusters Tom Salter, Victor Mikhailov, Corey Evans and Andrew Ellis Department of Chemistry International.
1 The r 0 Structural Parameters of Equatorial Bromocyclobutane, Conformational Stability from Temperature Dependent Infrared Spectra of Xenon Solutions,
O. PIRALI, J. OOMENS, N. POLFER FOM Rijnhuizen, 3439MN Nieuwegein, The Netherlands Y. UENO, R. MABOUDIAN Department of Chemical Engineering, U.C. Berkeley,
Laser spectroscopy of a halocarbocation: CH 2 I + Chong Tao, Calvin Mukarakate, and Scott A. Reid Department of Chemistry, Marquette University 61 st International.
Velocity Map Imaging Study of a Mass-Selected Ion Beam: the Photoinitiated Charge-Transfer Dissociation of and Ag + (C 6 H 6 ) Jonathon A. Maner, Daniel.
Sequential Bond Dissociation Energies of Fe + (CO 2 ) n (n = 1-5) Meghan MacKenna*, Hideya Koizumi, and P.B. Armentrout Department of Chemistry, University.
FAR-IR ACTION SPECTROSCOPY OF AMINOPHENOL AND ETHYLVANILLIN: EXPERIMENT AND THEORY Vasyl Yatsyna, Daniël Bakker*, Raimund Feifel, Vitali Zhaunerchyk, Anouk.
Introduction to Infrared Spectroscopy
Vibrational Predissociation Spectroscopy of Homoleptic Heptacoordinate Metal Carbonyl Complexes Allen M. Ricks and Michael A. Duncan Department of Chemistry.
Temperature Dependence of Rb + (H 2 O) n and Rb + (H 2 O) n Ar (n=3-5) Cluster Ions Amy L. Nicely OSU International Symposium on Molecular Spectroscopy.
Mass-Analyzed Threshold Ionization of Lu 2 Lu Wu, Mourad Roudjane, Dong-Sheng Yang Department of Chemistry University of Kentucky Lexington, KY, 40504,USA.
SPECTROSCOPY SL Chemistry Topic IHD – Index of hydrogen deficiency (degree of unsaturation) ■Used to determine from a molecular formula the number.
Vibrational Spectroscopy and Theory of Cu+(CH4)n and Ag+(CH4)n (n=1-6)
Allen M. Ricks and Michael A. Duncan Department of Chemistry
Metal ion induced pairing of cytosine bases
Department of Chemistry University of Kentucky
Presentation transcript:

Structures of the Dehydrogenation Products of Methane Activation by 5d Transition Metal Cations V. J. F. Lapoutre, † B. Redlich, ‡ A. F. G. van der Meer, ‡ J. Oomens, ‡,¶ J. M. Bakker, ‡ A. Sweeney, § A. Mookherjee, § and P. B. Armentrout § † FOM Institute for Plasma Physics Rijnhuizen, Edisonbaan 14, 3439 MN Nieuwegein, The Netherlands ‡ Radboud University Nijmegen, Institute for Molecules and Materials, FELIX Facility, Toernooiveld 7, 6525 ED Nijmegen, The Netherlands, ¶ Van ’t Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands, § Department of Chemistry, University of Utah, 315 South 1400 East, Room 2020, Salt Lake City, Utah 84112, USA Or How I Spent My Summer Vacation

Methane is a key fossil fuel that is presently underutilized because it is difficult to transport. This problem could be solved by conversion of methane to other chemicals. As originally demonstrated by Irikura and Beauchamp (J. Am. Chem. Soc. 1989, 111, 75–85; 1991, 113, 2769–2770), several third-row metal cations readily activate methane by dehydrogenation. However, the structures of the [M,C,2H] + products have yet to be experimentally examined, although theory suggests several competing structures: metal carbene distorted carbene hydrido metal (agostic interaction) carbyne a In order to successfully study such four atom species, which therefore have a low density of states, high laser power is required for IR multiple photon dissociation (IRMPD). Such power is provided by the intracavity operation of FELICE. a First calculated for WCH 2 + by Simon, Lemaire, Boissel, Maître, J. Chem. Phys. 2001, 115, 2510–2518. Motivation

Free-Electron Laser for IntraCavity Experiments - FELICE Bakker et al. J. Chem Phys. 132, (2010) End/Angle mirror Higher fluences of IR radiation Expands spectral region to lower frequencies

Molecular Beam Experiment Bakker et al. J. Chem Phys. 132, (2010)

Samples of Ta, W, Ir, or Pt (rods) were ablated with a frequency doubled YAG laser (532 nm) to create gas phase ions and neutrals. Gas phase transition metals were carried by He and interacted with a pulsed flow of methane gas to form metal complexes. For all four metals, the [M,C,2H] + species are formed in abundance. Ions were then irradiated in FELICE where they were dissociated with multiple photons over a range of about 400 – 3500 cm -1. Fragments and parent ions are pulse extracted ~10  s after interaction and mass analyzed by a reflectron time-of-flight mass spectrometry (ReTOF MS) and detected. Dissociation of complexes at various wavelengths corresponds to the resonant absorption of photons at that specific vibrational mode. The [M,C,2H] + species of M + = Ta +, W +, and Pt + were all observed to dissociate by H atom loss, whereas for M + = Ir +, loss of H 2 predominates. These observations are consistent with the known thermochemistry in all cases. Experimental Details

Density Functional Theory Calculations of [M,C,2H] + structures and vibrational frequencies were conducted at the B3LYP level using the def2-TZVPPD basis set. The def2-TZVPPD basis set is a balanced triple-zeta basis set with a small-core effective core potential for the heavier elements. Harmonic frequencies are calculated and scaled by a global scaling factor of to compensate for anharmonicity and experimental redshifting caused by the multiple photon nature of IRMPD. The global scaling factor is determined by fitting the calculated spectrum of the lowest energy [Pt,C,2H] + structure to the experimental spectrum. All DFT calculations were performed using the Gaussian 03 suite of programs. To verify that this level of theory is adequate, several additional calculations were carried out on the [Pt,C,2H] + system by Prof. C. van Wüllen. An all-electron quasi- relativistic zero-order regular approximation (ZORA) calculation was done along with scalar-relativistic calculations, and two-component calculations that include spin-orbit coupling. None of these alternative approaches led to appreciable differences in the calculated spectra.

IRMPD spectrum for [Pt,C,2H] + (top) and calculated spectra for the species shown. Energies relative to Pt + + CH 4 are indicated.

IRMPD spectrum for [Ta,C,2H] + (top) and calculated spectra for the species shown. Energies relative to Ta + + CH 4 are indicated.

IRMPD spectrum for [W,C,2H] + (top) and calculated spectra for the species shown. Energies relative to W + + CH 4 are indicated.

IRMPD spectrum for [Ir,C,2H] + (top) and calculated spectra for the species shown. Energies relative to Ir + + CH 4 are indicated.

PtCH 2 + is almost certainly the metal carbene, which can be formed exothermically in the reaction of Pt + with CH 4. The peak at 1980 cm -1 us attributed to an overtone. TaCH 2 + and WCH 2 + are almost certainly the agostically distorted metal carbenes, which can both be formed exothermically in the reaction of Ta + and W + with CH 4. Unexpectedly, IrCH 2 + shows evidence of both a hydrido carbyne and a carbene structure, both of which can be formed exothermically in the reaction of Ir + with CH 4. Conclusions

Potential energy surface for formation of HIrCH + and IrCH 2 + HIrCH + should be formed easily from Ir + + CH 4 but requires coupling of the quintet and singlet surfaces. Previous theoretical studies of the reaction of Ir + + CH 4 did not consider the formation of the hydrido carbyne, but showed carbene formation was facile, requiring quintet/triplet coupling. Perry, Ohanessian, Goddard, Organomet. 1994, 13, Musaev, Morokuma, Isr. J. Chem. 1993, 33, 307. Li, Zhang, Armentrout, Int. J. Mass Spectrom. 2006, , 279.

This work is financially supported by the NSF (CHE and PIRE ), the research program of the ‘Stichting voor Fundamenteel Onderzoek der Materie (FOM)’, and the “Nederlandse Organisatie voor Wetenschappelijk Onderzoek” (NOW). The authors are also thankful for the helpful staff at the FOM institute, especially those involved in the operation and maintenance of the FELICE beam line. Acknowledgements