Resonance Raman spectroscopy as a probe of the bis(mu-oxo)dicopper core

Citation
Pl. Holland et al., Resonance Raman spectroscopy as a probe of the bis(mu-oxo)dicopper core, J AM CHEM S, 122(5), 2000, pp. 792-802
Citations number
70
Categorie Soggetti
Chemistry & Analysis",Chemistry
Journal title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
ISSN journal
00027863 → ACNP
Volume
122
Issue
5
Year of publication
2000
Pages
792 - 802
Database
ISI
SICI code
0002-7863(20000209)122:5<792:RRSAAP>2.0.ZU;2-Y
Abstract
Resonance Raman spectra of dicopper complexes [L2Cu2(mu-O)(2)](2+) contain a number of resonance-enhanced features between 500 and 900 cm(-1), with L = R(3)TACN and various bidentate ligands (TACN = 1,4,7-triazacyclononane). Most importantly, there is a vibration near 600 cm(-1) in all [L2Cu2(mu-O)( 2)](2+) compounds that is polarized, shifts by 19-27 cm(-1) upon O-18(2) su bstitution, and gives a new peak with (OO)-O-16-O-18 substitution, identify ing it as a totally symmetric A, vibration of the bis(mu-oxo)dicopper(III) core. Changing the pendant groups on R(3)TACN causes shifts in the frequenc y of the Cu-2(mu-O)(2) vibration, but the direction of these shifts depends on the details of the organic fragment. A substantial shift to higher freq uency is evident when bidentate ligands are used in place of TACN. Importan tly, bidentate ligands with two different types of nitrogen donors show two independent core vibrations; these are assigned as "breathing" and "pairwi se" modes through simple group theory considerations as well as by calculat ions using density functional theory. These calculations are extended to ex amine systematic trends with ligand variation as well as potential excited- state distortions of the core. Finally, the symmetry and energy of the Cu-2 (mu-O)(2) vibrations are compared with resonance Raman data for other biolo gically relevant high-valent M-2(mu-O)(2) cores (M = Fe, Mn) to derive less ons for examining biological and model systems.