首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Infrared Spectroscopy of Dioxouranium(V) Complexes with Solvent Molecules: Effect of Reduction
Authors:Gary S Groenewold Dr  Michael J Van Stipdonk Prof  Wibe A de Jong Dr  Jos Oomens Dr  Garold L Gresham Dr  Michael E McIlwain Dr  Da Gao Dr  Bertrand Siboulet Dr  Lucas Visscher Prof  Michael Kullman  Nick Polfer Prof
Institution:1. Chemical Sciences, Idaho National Laboratory, 2151 North Blvd., Idaho Falls, ID, 83415‐2208, USA, Fax: (+1)?208?526?8541;2. Department of Chemistry, Wichita State University, Wichita, KS, USA, Fax: (+1)?316?978?3431;3. Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, Richland, WA, USA, Fax: (+1)?509?376?0420;4. FOM Instituut voor Plasmafysica Rijnhuizen, Nieuwegein, The Netherlands;5. DEN/DRCP/SCPS, CEA Marcoule, 30207, Bagnols‐sur‐Cèze Cedex, France;6. Vrije Universiteit Amsterdam, The Netherlands
Abstract:UO2+–solvent complexes having the general formula UO2(ROH)]+ (R=H, CH3, C2H5, and n‐C3H7) are formed using electrospray ionization and stored in a Fourier transform ion cyclotron resonance mass spectrometer, where they are isolated by mass‐to‐charge ratio, and then photofragmented using a free‐electron laser scanning through the 10 μm region of the infrared spectrum. Asymmetric O=U=O stretching frequencies (ν3) are measured over a very small range from ~953 cm?1 for H2O to ~944 cm?1 for n‐propanol (n‐PrOH)] for all four complexes, indicating that the nature of the alkyl group does not greatly affect the metal centre. The ν3 values generally decrease with increasing nucleophilicity of the solvent, except for the methanol (MeOH)‐containing complex, which has a measured ν3 value equal to that of the n‐PrOH‐containing complex. The ν3 frequency values for these U(V) complexes are about 20 cm?1 lower than those measured for isoelectronic U(VI) ion‐pair species containing analogous alkoxides. ν3 values for the U(V) complexes are comparable to those for the anionic UO2(NO3)3]? complex, and 40–70 cm?1 lower than previously reported values for ligated uranyl(VI) dication complexes. The lower frequency is attributed to weakening of the O?U?O bonds by repulsion related to reduction of the U metal centre, which increases electron density in the antibonding π* orbitals of the uranyl moiety. Computational modelling of the ν3 frequencies using the B3LYP and PBE functionals is in good agreement with the IRMPD measurements, in that the calculated values fall in a very small range and are within a few cm?1 of measurements. The values generated using the LDA functional are slightly higher and substantially overestimate the trends. Subtleties in the trend in ν3 frequencies for the H2O–MeOH–EtOH–n‐PrOH series are not reproduced by the calculations, specifically for the MeOH complex, which has a lower than expected value.
Keywords:density functional calculations  infrared multiple photon dissociation spectroscopy  mass spectroscopy  uranium  uranyl coordination complex
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号