Noble Gas-Actinide Compounds: Complexation of the CUO Molecule by Ar, Kr, and Xe Atoms in Noble Gas Matrices

The CUO molecule, formed from the reaction of laser-ablated U atoms with CO in a noble gas, exhibits very different stretching frequencies in a solid argon matrix [804.3 and 852.5 wave numbers (cm-1)] than in a solid neon matrix (872.2 and 1047.3 cm-1). Related experiments in a matrix consisting of...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2002-03, Vol.295 (5563), p.2242-2245
Hauptverfasser: Li, Jun, Bursten, Bruce E., Liang, Binyong, Andrews, Lester
Format: Artikel
Sprache:eng
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Zusammenfassung:The CUO molecule, formed from the reaction of laser-ablated U atoms with CO in a noble gas, exhibits very different stretching frequencies in a solid argon matrix [804.3 and 852.5 wave numbers (cm-1)] than in a solid neon matrix (872.2 and 1047.3 cm-1). Related experiments in a matrix consisting of 1% argon in neon suggest that the argon atoms are interacting directly with the CUO molecule. Relativistic density functional calculations predict that CUO can bind directly to one argon atom (U-Ar = 3.16 angstroms; binding energy = 3.2 kilocalories per mole), accompanied by a change in the ground state from a singlet to a triplet. Our experimental and theoretical results also suggest that multiple argon atoms can bind to a single CUO molecule.
ISSN:0036-8075
0193-4511
1095-9203
DOI:10.1126/science.1069342