4.8 Article

Infrared Spectra and Quantum Chemical Calculations of the Uranium Carbide Molecules UC and CUC with Triple Bonds

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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 132, 期 24, 页码 8484-8488

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AMER CHEMICAL SOC
DOI: 10.1021/ja102475t

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资金

  1. DOE [DE-SC0001034]
  2. NCSA [CHE07-0004N]
  3. Swedish Research Council [70526201]
  4. Fundacao para a Ciencia e a Tecnologia (Portugal)

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Laser evaporation of carbon-rich uranium/carbon alloys followed by atom reactions in a solid argon matrix and trapping at 8 K gives weak infrared absorptions for CUO at 852 and 804 cm(-1). A new band at 827 cm(-1) becomes a doublet with mixed carbon 12 and 13 isotopes and exhibits the 1.0381 isotopic frequency ratio, which is appropriate for the UC diatomic molecule, and another new band at 891 cm(-1) gives a three-band mixed isotopic spectrum with the 1.0366 isotopic frequency ratio, which is characteristic of the linear CUC molecule. CASPT2 calculations with dynamical correlation find the C U C ground state as linear (3)Sigma(+)(u)- with 1.840 angstrom bond length and molecular orbital occupancies for an effective bond order of 2.83. Similar calculations with spin-orbit coupling show that the U C diatomic molecule has a quintet (Lambda = 5, Omega = 3) ground state, a similar 1.855 angstrom bond length, and a fully developed triple bond of 2.82 effective bond order.

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