Photophysics of diimine platinum(II) bis-acetylide complexes

Citation
Ce. Whittle et al., Photophysics of diimine platinum(II) bis-acetylide complexes, INORG CHEM, 40(16), 2001, pp. 4053-4062
Citations number
84
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
INORGANIC CHEMISTRY
ISSN journal
00201669 → ACNP
Volume
40
Issue
16
Year of publication
2001
Pages
4053 - 4062
Database
ISI
SICI code
0020-1669(20010730)40:16<4053:PODPBC>2.0.ZU;2-#
Abstract
A comprehensive photophysical investigation has been carried out on a serie s of eight complexes of the type (diimine)Pt(-C=C-Ar)(2), where diimine is a series of 2,2 ' -bipyridine (bpy) ligands and -C=C-Ar is a series of subs tituted aryl acetylide ligands. In one series of complexes, the energy of t he Pt --> bpy metal-to-ligand charge transfer (MLCT) excited state is varie d by changing the substituents on the 4,4 '- and/or the 5,5 ' -positions of the bpy ligand. In a second series of complexes the electronic demand of t he aryl acetylide ligand is varied by changing the para substituent (X) on the aryl ring (X = -CF3, -CH3, -OCH3, and -N(CH3)(2)). The effect of variat ion of the substituents on the excited states of the complexes has been ass essed by examining their UV-visible absorption, variable-temperature photol uminescence, transient absorption, and time-resolved infrared spectroscopy. In addition, the nonradiative decay rates of the series of complexes are s ubjected to a quantitative energy gap law analysis. The results of this stu dy reveal that in most cases the photophysics of the complexes is dominated by the energetically low lying Pt --> bpy (MLCT)-M-3 state. Some of the co mplexes also feature a low-lying intraligand (IL) (3)pi,pi* excited state t hat is derived from transitions between pi- and pi*-type orbitals localized largely on the aryl acetylide ligands. The involvement of the IL (3)pi,pi* state in the photophysics of some of the complexes is signaled by unusual features in the transient absorption, time-resolved infrared, and photolumi nescence spectra and in the excited-state decay kinetics. The time-resolved infrared difference spectroscopy indicates that Pt - bpy MLCT excitation i nduces a +25 to + 35 cm(-1) shift in the frequency of the C-C stretching ba nd. This is the first study to report the effect of MLCT excitation on the vibrational frequency of an acetylide ligand.