| Literature DB >> 20657399 |
Masayuki Kobayashi1, Shigeyuki Masaoka, Ken Sakai.
Abstract
With the aim of developing new molecular devices having higher photo-Entities:
Mesh:
Substances:
Year: 2010 PMID: 20657399 PMCID: PMC6257604 DOI: 10.3390/molecules15074908
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Three-component system for H2-evolving cycle.
Scheme 2Covalently linked single-component system.
Scheme 3Chemical structures of the new Ru(II)Pt(II) dimers investigated.
Scheme 4Synthetic routes to complexes 1-3.
Absorption and emission properties of 1-3.a
a Measured in air at room temperature
Figure 1Absorption spectra of [1](PF6)2·3H2O (red line), [2]Cl·6H2O (blue line), and [3](PF6)2·2H2O (green line) in DMF at 20 °C in air.
Figure 2Luminescence spectra of [1] (PF6)2·3H2O (red line), [2]Cl·6H2O (blue line), and [3](PF6)2·2H2O (green line) in DMF at 20 °C in air, where the excitation wavelength was fixed at 425 nm and all the solutions had an equal absorbance at 425 nm (0.1).
Electrochemical dataa of 1-3 and A-C.
a Determined at 20 °C with 0.1 M TBAP as the supporting electrolyte; scan rate 100 mVs-1; b This is converted from the value reported in V vs. SCE (E1/2 = -2.29 V vs. SCE) [28], where conversion was made using E(Fc/Fc+) = E(SCE) – 0.433 V [31].
Figure 3Cyclic voltammograms of [1](PF6)2·3H2O (red), [2]Cl·6H2O (blue) and [3](PF6)2·2H2O (green) in either 0.1 M TBAP/dry MeCN (1, 3) or 0.1 M TBAP/dry DMF (2), recorded at a scan rate of 100 mVs-1.
Figure 4Optimized structures of 2 for the four possible conformers 2a-d in water, computed at the B3LYP level of DFT using the LanL2DZ base set, using the PCM method.
Relative energies and dihedral angles for the four possible conformers of 2.
aDihedral angles between the ppy and the phen planes
Figure 5Frontier molecular orbitals of a fully optimized structure of conformer 2a for 2 in water, where the structure was computed at the B3LYP level of DFT using the LanL2DZ base set, using the PCM method.
Figure 6Photochemical H2 production from an aqueous acetate buffer solution (0.03 M CH3CO2H, 0.07 M CH3CO2Na, pH 5.0, 10 mL) containing 30 mM EDTA in the presence of (a) 0.1 mM [2]Cl·6H2O, (b) 0.1 mM [2]Cl·6H2Oand 2 mM MV(NO3)2, (c) 0.1 mM [3](PF6)2·2H2O, and (d) 0.1 mM [3](PF6)2·2H2Oand 2 mM MV(NO3)2.