Inorganica Chimica Acta 363-8 1627-1638 (original) (raw)
Tuning the Excited-State Energy of the Organic Chromophore in Bichromophoric Systems Based on the RuII Complexes of Tridentate Ligands
Sebastiano Campagna
Chemistry - A European Journal, 2007
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Electronic Structures and Absorption Spectra of Linkage Isomers of Trithiocyanato (4,4‘,4‘ ‘-Tricarboxy-2,2‘:6,2‘ ‘-terpyridine) Ruthenium(II) Complexes: A DFT Study
Sutapa Ghosh
Inorganic Chemistry, 2006
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Electronic Excited States and UV–Vis Absorption Spectra of the Dihydropyrene/Cyclophanediene Photochromic Couple: a Theoretical Investigation
rudraditya sarkar
The Journal of Physical Chemistry A
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A combined computational and experimental study of the [Co(bpy)3]2+/3+ complexes as one-electron outer-sphere redox couples in dye-sensitized solar cell electrolyte media
Pooria Farahani, Mahmoud Zendehdel
Physical Chemistry Chemical Physics, 2014
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Solvent Switching of Intramolecular Energy Transfer in Bichromophoric Systems: Photophysics of (2,2‘-Bipyridine)tetracyanoruthenate(II)/Pyrenyl Complexes
Fausto Puntoriero
Inorganic Chemistry, 2003
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Effect of Substituents on Electronic Structure and Photophysical Properties of Re(I)(CO) 3 Cl(R-2, 2'-Bipyridine) Complex: DFT/TDDFT Study
fedasa dereje
0riginal article, 2020
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Application of Time-Resolved Infrared Spectroscopy to Electronic Structure in Metal-to-Ligand Charge-Transfer Excited States
Jon Schoonover
Inorganic Chemistry, 2002
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The influence of ligand localized excited states on the photophysics of second row and third row transition metal terpyridyl complexes: Recent examples and a case study
T. Lian
Coordination Chemistry Reviews, 2015
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Electrochemical, spectroelectrochemical and theoretical studies on the reduction and deprotonation of the photovoltaic sensitizer [(H3-tctpy)RuII(NCS)3]− (H3-tctpy=2,2′:6′,2′′-terpyridine-4,4′,4′′-tricarboxylic acid)
Leone Spiccia
Journal of Electroanalytical Chemistry, 2000
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Energy Migration Processes in Re(I) MLCT Complexes Featuring a Chromophoric Ancillary Ligand
Tia Lee
Inorganic Chemistry, 2020
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Excited-State Electronic Structure in Polypyridyl Complexes Containing Unsymmetrical Ligands
Gregory D Smith
Inorganic Chemistry, 1999
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Effect of Substituents on Electronic Structure and Photophysical Properties of Re(I)(CO)<sub>3</sub>Cl(R-2, 2’-Bipyridine) Complex: DFT/TDDFT Study
fedasa dereje
International journal of computational and theoretical chemistry, 2020
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Theoretical Studies of Ground and Excited Electronic States in a Series of Rhenium(I) Bipyridine Complexes Containing Diarylethynyl-Based Structure
Ai Ren
Inorganic Chemistry, 2004
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A High Molar Extinction Coefficient Bisterpyridyl Homoleptic Ru(II) Complex with trans-2-Methyl-2-butenoic Acid Functionality: Potential Dye for Dye-Sensitized Solar Cells
Olomola Temitope O OLOMOLA
International Journal of Molecular Sciences, 2012
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Medium dependence of intramolecular vibrational modes coupled to MLCT transitions in metal polypyridyl complexes
Zachary Williams
The Journal of Physical …, 2002
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UV–Vis spectroscopy and density functional study of solvent effect on the charge transfer band of the n → σ* complexes of 2-Methylpyridine and 2-Chloropyridine with molecular iodine
Abhijit Boruah
Journal of Molecular Structure, 2017
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Intramolecular charge transfer in pyridinium-substituted Ru-polypyridine complexes
Khalil Abboud
Inorganica Chimica Acta, 2000
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Ruthenium(II)- bipyridyl with extended π-system: Improved thermo-stable sensitizer for efficient and long-term durable dye sensitized solar cells
Paidi Reddy
Journal of Chemical Sciences, 2011
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Structural and Photophysical Properties of Various Polypyridyl Ligands: A Combined Experimental and Computational Study
Liesbeth De Bruecker
ChemPhysChem, 2020
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A TD-DFT study on the electronic spectrum of Ru(II)L2 [L=bis(5′-methyl-2,2′-bipyridine-6-carboxylato)] in the gas phase and DMF solution
Athanassios Philippopoulos
Chemical Physics, 2006
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Absorption band structure of the photochromic dimethyldihydropyrene/metacyclophanediene couple. Insight from vibronic coupling theory
rudraditya sarkar
The Journal of Chemical Physics
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Electron-, Proton-, and Photon-Induced Spectroscopic Changes in Chromophore-Quencher Tricarbonyl(2,2′-Bipyridine)rhenium(I) Complexes with 4,4′-Azobis(pyridine)
gaston pourrieux
Inorganic Chemistry, 2010
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Energy Transfer Pathways in Dinuclear Heteroleptic Polypyridyl Complexes: Through-Space vs Through-Bond Interaction Mechanisms
Leif Hammarström
Inorganic Chemistry, 2004
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Tuning of photochemical and photophysical properties of [RuII(2,2'-bipyridine)2Lx] complexes using nonchromophoric ligand variations
Benedito S Lima-Neto
Journal of the Brazilian Chemical Society, 2010
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Effect of deprotonation on absorption and emission spectra of Ru(ii)-bpy complexes functionalized with carboxyl groups
Victor Albert
Physical Chemistry Chemical Physics, 2010
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Photophysical properties of ligand localized excited state in ruthenium (ii) polypyridyl complexes: a combined effect of electron donor–acceptor ligand
Dr. Amitava Das
2011
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Photophysics and photochemistry of a series of M(CO)5L complexes where M = Cr or Mo and L = pyridine or a substituted pyridine
Alistair Lees
Organometallics, 1986
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A theoretical investigation of the ground and excited states of selected Ru and Os polypyridyl molecular dyes
Jean-François Guillemoles
Journal of Physical Chemistry a, 2002
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Journal of Organometallic Chemistry 817 (2016) 26-
Carlos Franca
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Mechanism of the Photochemical Ligand Substitution Reactions of fac-[Re(bpy)(CO)3(PR3)]+ Complexes and the Properties of Their Triplet Ligand-Field Excited States
Hisao Hori
Journal of the American Chemical Society, 2002
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Theoretical Studies of Ground and Excited Electronic States in a Series of Halide Rhenium(I) Bipyridine Complexes
Ai Ren
Journal of Physical Chemistry A, 2004
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