Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5376718 | Chemical Physics | 2006 | 8 Pages |
Abstract
Ruthenium polypyridine and polypyridined-derivative complexes are used in dye-sensitized solar cell as a light to current conversion sensitizers, study on the electronic absorption spectroscopy of which are very important for the understanding of their photovoltaic character. A theoretical research of UV-Vis spectrum on the Ru(II)L2[LÂ =Â bis(5â²-methyl-2,2â²-bipyridine-6-carboxylato)], a polypyridined-derivative mononuclear ruthenium complex, is presented here. Transition excited states of Ru(II)L2 in the gas phase have been studied by the time-dependent density functional theory (TD-DFT) using a hybrid functional, B3LYP, as well as the 3-21Gâ basis set. Two maximum absorptions are dominated by the metal-to-ligand-charge-transfer (MLCT) transitions, from Ru 4d orbitals to the bipyridine rings Ïâ. Taking account of solvent effect, the electronic absorption spectrum of Ru(II)L2 in N,Nâ²-dimethyl formamide (DMF) solution has also been investigated on the basis of Polarized Continuum Model (PCM) in connection with TD-DFT. Calculation results indicate that the two maximum MLCT absorption peaks are blue-shifted in DMF solution with respect to those in the gas phase, which is in agreement with the observed phenomenon of other ruthenium polypyridine-type complexes.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Ying Xu, Wen-Kai Chen, Mei-Juan Cao, Shu-Hong Liu, Jun-Qian Li, Athanassios. I. Philippopoulos, Polycarpos Falaras,