Electron transfer reactions play a key role for artificial solar energy conversion, however, the underlying reaction mechanisms and the interplay with the molecular structure are still poorly understood due to the complexity of the reaction pathways and ultrafast timescales. In order to investigate such light-induced reaction pathways, a new spectroscopic tool has been applied, which combines UV-vis and resonance Raman spectroscopy at multiple excitation wavelengths with electrochemistry in a thin-layer electrochemical cell to study [RuII(tbtpy)2]2+ (tbtpy = tri-tert-butyl-2,2′:6′,2′′-terpyridine) as a model compound for the photo-activated electron donor in structurally related molecular and supramolecular assemblies. The new spectroscopic...
There is an intense interest in designing molecular systems which will absorb visible sunlight, init...
Controlling light‐induced accumulation of electrons or holes is desirable in view of multi‐electron ...
The properties of Ruthenium (Ru) polypyridine complexes make them promising choice as photosensitize...
Electron transfer reactions play a key role for artificial solar energy conversion, however, the und...
Terpyridine 4H-imidazole-ruthenium(II) complexes are considered promising candidates for use as sens...
Understanding photodriven multielectron reaction pathways requires the identification and spectrosco...
To explore the impact of structure on photoinduced electron transfer processes, systematically tuned...
Author Institution: Department of Chemistry, Michigan State UniversityThe photochemical and photophy...
We present procedures for determining the nature of charge-transfer excited states in transition met...
Knowledge of electronic structures and transport mechanisms at molecule-semiconductor interfaces is ...
The work covered in this thesis all falls under the theme of photophysical processes after light and...
Knowledge of electronic structures and transport mechanisms in dye-sensitized semiconductors is moti...
International audienceIncreasing the efficiency of molecular artificial photosynthetic systems is ma...
Increasing the efficiency of molecular artificial photosynthetic systems is mandatory for the constr...
International audienceThe design of photoactive systems capable of storing and relaying multiple ele...
There is an intense interest in designing molecular systems which will absorb visible sunlight, init...
Controlling light‐induced accumulation of electrons or holes is desirable in view of multi‐electron ...
The properties of Ruthenium (Ru) polypyridine complexes make them promising choice as photosensitize...
Electron transfer reactions play a key role for artificial solar energy conversion, however, the und...
Terpyridine 4H-imidazole-ruthenium(II) complexes are considered promising candidates for use as sens...
Understanding photodriven multielectron reaction pathways requires the identification and spectrosco...
To explore the impact of structure on photoinduced electron transfer processes, systematically tuned...
Author Institution: Department of Chemistry, Michigan State UniversityThe photochemical and photophy...
We present procedures for determining the nature of charge-transfer excited states in transition met...
Knowledge of electronic structures and transport mechanisms at molecule-semiconductor interfaces is ...
The work covered in this thesis all falls under the theme of photophysical processes after light and...
Knowledge of electronic structures and transport mechanisms in dye-sensitized semiconductors is moti...
International audienceIncreasing the efficiency of molecular artificial photosynthetic systems is ma...
Increasing the efficiency of molecular artificial photosynthetic systems is mandatory for the constr...
International audienceThe design of photoactive systems capable of storing and relaying multiple ele...
There is an intense interest in designing molecular systems which will absorb visible sunlight, init...
Controlling light‐induced accumulation of electrons or holes is desirable in view of multi‐electron ...
The properties of Ruthenium (Ru) polypyridine complexes make them promising choice as photosensitize...