Higher-energy emissions from the metal-to-ligand charge-transfer (MLCT) excited states of a series of polypyridyl Os(II) complexes were observed at the fluid-to-film transition in PEG-DMA550. The higher-energy excited states, caused by a “rigid medium effect” in the film, led to enhanced emission quantum yields and longer excited-state lifetimes. Detailed analyses of spectra and excited-state dynamics by Franck–Condon emission spectral analysis and application of the energy gap law for nonradiative excited-state decay reveal that the rigid medium effect arises from the inability of part of the local medium dielectric environment to respond to the change in charge distribution in the excited state during its lifetime. Enhanced excited-state...
Using polarization sensitive ultrafast transient absorption spectroscopy we have studied energy tran...
This work encompasses three chapters investigating modifications to the excited states of ruthenium(...
Transition metal polypyridine complexes are finding widespread applications within many areas of che...
The lowest energy excited states in Os(II) polypyridine complexes are of a metal-to-ligand charge tr...
The role of ligand-field states for the photophysical properties of d6 systems has been discussed in...
We present steady-state absorption and emission spectroscopy and femtosecond broadband photoluminesc...
In its most simple form, the energy gap law for excited-state nonradiative decay predicts a linear d...
The photochemical and photophysical properties of polypyridyl complexes of Ru, Os, and Re have been ...
Institute of Physical Chemistry, Swiss Federal Institute of Technology, CH-1015 Lausanne, Switzerlan...
ABSTRACT: We present steady-state absorption and emission spectroscopy and femtosecond broadband pho...
Remarkably little is known about metal-to-ligand charge transfer (MLCT) excited-state relaxation pat...
Although superficially similar, the bis-dipyrrinato-palladium(II) complex <b>1</b> and the bridged ...
A general method was developed for preparing complexes of Ru(II) with three different bidentate liga...
This dissertation covers studies of excited state processes in two types of solar energy materials: ...
Optical confinement can induce enhancement of the resonance energy transfer between fluorescent mole...
Using polarization sensitive ultrafast transient absorption spectroscopy we have studied energy tran...
This work encompasses three chapters investigating modifications to the excited states of ruthenium(...
Transition metal polypyridine complexes are finding widespread applications within many areas of che...
The lowest energy excited states in Os(II) polypyridine complexes are of a metal-to-ligand charge tr...
The role of ligand-field states for the photophysical properties of d6 systems has been discussed in...
We present steady-state absorption and emission spectroscopy and femtosecond broadband photoluminesc...
In its most simple form, the energy gap law for excited-state nonradiative decay predicts a linear d...
The photochemical and photophysical properties of polypyridyl complexes of Ru, Os, and Re have been ...
Institute of Physical Chemistry, Swiss Federal Institute of Technology, CH-1015 Lausanne, Switzerlan...
ABSTRACT: We present steady-state absorption and emission spectroscopy and femtosecond broadband pho...
Remarkably little is known about metal-to-ligand charge transfer (MLCT) excited-state relaxation pat...
Although superficially similar, the bis-dipyrrinato-palladium(II) complex <b>1</b> and the bridged ...
A general method was developed for preparing complexes of Ru(II) with three different bidentate liga...
This dissertation covers studies of excited state processes in two types of solar energy materials: ...
Optical confinement can induce enhancement of the resonance energy transfer between fluorescent mole...
Using polarization sensitive ultrafast transient absorption spectroscopy we have studied energy tran...
This work encompasses three chapters investigating modifications to the excited states of ruthenium(...
Transition metal polypyridine complexes are finding widespread applications within many areas of che...