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- W3101232110 endingPage "29585" @default.
- W3101232110 startingPage "29574" @default.
- W3101232110 abstract "Recently, some new series of heteroleptic ruthenium-based dyes, the so-called RD dyes, were designed and synthesized showing better performances compared to the well-known homoleptic N719. In this work, using the density-functional theory and its time-dependent extension, we have investigated the electronic structure and absorption spectra of these newly synthesized dyes, and compared the results to those of N3 dye to describe the variations of the properties due to the molecular engineering of ancillary ligand. We have shown that the calculation results of the absorption spectra for these dyes using the PBE0 for the exchange-correlation functional are in a better agreement with the experiment than using B3LYP or range-separated CAM-B3LYP. We have also derived a formula based on the DFT and used it to visually describe the level shifts in a solvent. The higher $J_{sc}$ observed in these new dyes is explained by the fact that here, in contrast to N3, the excitation charge was effectively transferred to the anchoring ligand. Furthermore, we have shown that the difference dipole moment vectors of the ground and excited states can be used to determine the charge-transfer direction in an excitation process. Finally, the different electron lifetimes observed in these dyes is explained by investigating the adsorption geometries and the relative orientations of iodine molecules in different ``dye$cdots$I$_2$'' complexes." @default.
- W3101232110 created "2020-11-23" @default.
- W3101232110 creator A5040424125 @default.
- W3101232110 creator A5060692577 @default.
- W3101232110 date "2015-01-01" @default.
- W3101232110 modified "2023-09-25" @default.
- W3101232110 title "Theoretical description of efficiency enhancement in DSSCs sensitized by newly synthesized heteroleptic Ru complexes" @default.
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- W3101232110 doi "https://doi.org/10.1039/c5cp02947c" @default.
- W3101232110 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/26477398" @default.
- W3101232110 hasPublicationYear "2015" @default.
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