

Author: Esseffar M. Mó O. Yáñez M.
Publisher: Taylor & Francis Ltd
ISSN: 1362-3028
Source: Molecular Physics, Vol.101, Iss.9, 2003-01, pp. : 1249-1258
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Abstract
The structure and relative stability of different lactone-Cu+ complexes, including cycles changing from four to six-membered rings, have been investigated through the use of density functional theory methods. The geometries and vibrational frequencies were calculated at the B3LYP/6-311G(d,p) level. Final energies were obtained in single point calculations carried out at the B3LYP/6-311 + G(2df,2p) level of theory. Upon interaction with Cu+ in the gas phase, lactones behave in a rather similar way as they do in protonation processes. Systematically the global minimum of the potential energy surface corresponds to the attachment of the metal cation to the carbonyl oxygen
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