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Excited-State Electronic Structure in Polypyridyl Complexes Containing Unsymmetrical Ligands.

作者信息

Omberg Kristin M., Smith Gregory D., Kavaliunas Darius A., Chen Pingyun, Treadway Joseph A., Schoonover Jon R., Palmer Richard A., Meyer Thomas J.

机构信息

Department of Chemistry, CB#3290, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599-3290, and Department of Chemistry, Duke University, P.O. Box 90346, Durham, North Carolina 27708-0346.

出版信息

Inorg Chem. 1999 Mar 8;38(5):951-956. doi: 10.1021/ic981338l.

Abstract

Step-scan Fourier transform infrared absorption difference time-resolved (S(2)FTIR DeltaA TRS) and time-resolved resonance Raman (TR(3)) spectroscopies have been applied to a series of questions related to excited-state structure in the metal-to-ligand charge transfer (MLCT) excited states of Ru(bpy)(2)(4,4'-(CO(2)Et)(2)bpy), Ru(bpy)(2)(4-CO(2)Et-4'-CH(3)bpy), Ru(bpy)(4,4'-(CO(2)Et)(2)bpy)(2), Ru(4,4'-(CO(2)Et)(2)bpy)(3), Ru(bpy)(2)(4,4'-(CONEt(2))(2)bpy), Ru(bpy)(2)(4-CONEt(2)-4'-CH(3)bpy), and Ru(4-CONEt(2)-4'-CH(3)bpy)(3) (bpy is 2,2'-bipyridine). These complexes contain bpy ligands which are either symmetrically or unsymmetrically derivatized with electron-withdrawing ester or amide substituents. Analysis of the vibrational data, largely based on the magnitudes of the nu(CO) shifts of the amide and ester substituents (Deltanu(CO)), reveals that the ester- or amide-derivatized ligands are the ultimate acceptors and that the excited electron is localized on one acceptor ligand on the nanosecond time scale. In the unsymmetrically substituted acceptor ligands, the excited electron is largely polarized toward the ester- or amide-derivatized pyridine rings. In the MLCT excited states of Ru(bpy)(2)(4,4'-(CO(2)Et)(2)bpy) and Ru(bpy)(2)(4,4'-(CONEt(2))(2)bpy), Deltanu(CO) is only 60-70% of that observed upon complete ligand reduction due to a strong polarization interaction in the excited state between the dpi(5) Ru(III) core and the excited electron.

摘要

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