Search results for "PHOTOCHEMISTRY"

showing 10 items of 2034 documents

A Vanadium(III) Complex with Blue and NIR-II Spin-Flip Luminescence in Solution.

2020

Luminescence from Earth-abundant metal ions in solution at room temperature is a very challenging objective due to the intrinsically weak ligand field splitting of first-row transition metal ions, which leads to efficient nonradiative deactivation via metal-centered states. Only a handful of 3d

Ligand field theoryChemistryMetal ions in aqueous solutionVanadiumchemistry.chemical_elementGeneral Chemistry010402 general chemistryPhotochemistry01 natural sciencesBiochemistryCatalysisTransition metal ions0104 chemical sciencesCondensed Matter::Materials ScienceColloid and Surface ChemistryPhysics::Plasma PhysicsSpin-flipLuminescenceJournal of the American Chemical Society
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Relaxation Dynamics of Cr(acac)3 Probed by Ultrafast Infrared Spectroscopy

2007

Ultrafast infrared spectroscopy is used to probe the dynamics of Cr(acac)3 upon ligand field (400 nm) and charge transfer state (345 nm) excitation. At both pump wavelengths, the ground state absorption bands are strongly bleached at zero delay, and new broad transient absorption bands appear red shifted from the bleached bands. Recovery of ground state bleach is dominated by a fast time constant (15 ps), while a small percentage recovers within 760−900 ps. Despite the extensive studies on Cr(acac)3 photophysics, the fast recovery of the ground state as a major channel is reported here for the first time. As a general result, the present communication emphasizes the great value of ultrafast…

Ligand field theoryChemistryRelaxation (NMR)Analytical chemistryInfrared spectroscopyGeneral ChemistryPhotochemistryBiochemistryCatalysisWavelengthColloid and Surface ChemistryUltrafast laser spectroscopyAbsorption (electromagnetic radiation)Ground stateExcitationJournal of the American Chemical Society
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Anionic Cyclometalated Iridium(III) Complexes with a Bis-Tetrazolate Ancillary Ligand for Light-Emitting Electrochemical Cells

2017

none 10 si A series of monoanionic Ir(III) complexes (2-4) of general formula [Ir(C^N)2(b-trz)](TBA) are presented, where C^N indicates three different cyclometallating ligands (Hppy = 2-phenylpyridine; Hdfppy = 2-(2,4-difluoro-phenyl)pyridine; Hpqu = 2-methyl-3-phenylquinoxaline), b-trz is a bis-tetrazolate anionic N^N chelator (H2b-trz = di(1H-tetrazol-5-yl)methane), and TBA = tetrabutylammonium. 2-4 are prepared in good yields by means of the reaction of the suitable b-trz bidentate ligand with the desired iridium(III) precursor. The chelating nature of the ancillary ligand, thanks to an optimized structure and geometry, improves the stability of the complexes, which have been fully char…

Ligand field theoryLuminescenceoptoelectronicsChemistryLigandLECCationic polymerizationQuantum yieldchemistry.chemical_element02 engineering and technologyIridium010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry01 natural sciences0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundPyridinePhysical and Theoretical Chemistry; Inorganic ChemistryDensity functional theoryIridiumPhysical and Theoretical Chemistry0210 nano-technologyHOMO/LUMO
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Ultrafast and long-time excited state kinetics of an NIR-emissive vanadium(iii) complex I: synthesis, spectroscopy and static quantum chemistry.

2021

In spite of intense, recent research efforts, luminescent transition metal complexes with Earth-abundant metals are still very rare owing to the small ligand field splitting of 3d transition metal complexes and the resulting non-emissive low-energy metal-centered states. Low-energy excited states decay efficiently non-radiatively, so that near-infrared emissive transition metal complexes with 3d transition metals are even more challenging. We report that the heteroleptic pseudo-octahedral d2-vanadium(iii) complex VCl3(ddpd) (ddpd = N,N′-dimethyl-N,N′-dipyridine-2-yl-pyridine-2,6-diamine) shows near-infrared singlet → triplet spin–flip phosphorescence maxima at 1102, 1219 and 1256 nm with a …

Ligand field theoryPhotoluminescenceMaterials science010405 organic chemistryGeneral Chemistry010402 general chemistryPhotochemistry01 natural sciencesQuantum chemistry0104 chemical sciencesChemistryTransition metalExcited stateSinglet stateSpectroscopyPhosphorescenceChemical science
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A Heteroleptic Push-Pull Substituted Iron(II) Bis(tridentate) Complex with Low-Energy Charge-Transfer States

2014

A heteroleptic iron(II) complex [Fe(dcpp)(ddpd)](2+) with a strongly electron-withdrawing ligand (dcpp, 2,6-bis(2-carboxypyridyl)pyridine) and a strongly electron-donating tridentate tripyridine ligand (ddpd, N,N'-dimethyl-N,N'-dipyridine-2-yl-pyridine-2,6-diamine) is reported. Both ligands form six-membered chelate rings with the iron center, inducing a strong ligand field. This results in a high-energy, high-spin state ((5) T2 , (t2g )(4) (eg *)(2) ) and a low-spin ground state ((1) A1 , (t2g )(6) (eg *)(0) ). The intermediate triplet spin state ((3) T1 , (t2g )(5) (eg *)(1) ) is suggested to be between these states on the basis of the rapid dynamics after photoexcitation. The low-energy …

Ligand field theorySpin statesLigandOrganic ChemistryGeneral ChemistryPhotochemistryElectrochemistryCatalysislaw.inventionCrystallographychemistry.chemical_compoundchemistrylawExcited statePyridineGround stateElectron paramagnetic resonanceChemistry - A European Journal
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Synthesis and characterization of new aromatic tweezers and complex formation with tropylium ion in 1,2-dichloroethane

2001

A series of benzene and pyridine tweezers bearing phenyl, naphthyl and anthryl receptor units was prepared and characterized. The x-ray crystal structure of the 1,3-bis(9-methanolanthracene)methylbenzene ligand (5) is reported. UV–visible and NMR spectroscopy were used to investigate the host–guest chemistry of the new ligands in complexation with tropylium tetrafluoroborate as a model aromatic cationic guest in 1,2-dichloroethane. The appearance of coloured charge-transfer absorption bands demonstrates the complex formation with a tropylium ion. The enlargement of aryl receptor size from phenyl and naphthyl to anthryl increases the stability of complexes. Electron donor–acceptor interactio…

LigandArylOrganic ChemistryCationic polymerizationNuclear magnetic resonance spectroscopyPhotochemistrychemistry.chemical_compoundTropylium tetrafluoroboratechemistryIntramolecular forcePyridinePolymer chemistryPhysical and Theoretical ChemistryMolecular tweezersJournal of Physical Organic Chemistry
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Molecular Engineering of Iridium Blue Emitters Using Aryl N‐Heterocyclic Carbene Ligands

2016

The synthesis of a new series of neutral bis[2-(2,4-difluorophen-2-yl)pyridine][1-(2-aryl)-3-methylimidazol-2-ylidene]iridium(III) complexes is reported. Each complex has been characterized by NMR spectroscopy, UV/Vis spectrophotometry, and cyclic voltammetry, and the photophysical properties examined in depth. Furthermore, two of the complexes have been characterized by single-crystal X-ray diffraction analysis. By systematically modifying the cyclometalating aryl group on the N-heterocyclic carbene (NHC) ligand from 2,4-dimethoxyphenyl to 6-methoxy-2-methyl-3-pyridyl, the energy levels of the Ir complexes were modified to produce new blue emitters with increased HOMO and triplet-state ene…

LigandArylchemistry.chemical_element02 engineering and technologyNuclear magnetic resonance spectroscopy010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry01 natural sciences0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundchemistryPyridineOLEDIridiumCyclic voltammetry0210 nano-technologyCarbeneEuropean Journal of Inorganic Chemistry
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Mono-, bi- and polynuclear complexes of diphenylmethane with Cr, Co and Ru. Synthesis and investigation by 1H, 13C and 17O NMR

1995

Abstract Complexes of diphenylmethane (Ph 2 CH 2 ): Ph 2 CH 2 Cr(CO) 3 ( 1 ), Ph 2 CH 2 [Cr(CO) 3 ] 2 ( 2 ), Ph 2 CH 2 Co 4 (CO) 9 ( 3 ), Ph 2 CH 2 [Co 4 (CO) 9 ] 2 ( 4 ), Ph 2 CH 2 Cr(CO) 3 Co 4 (CO) 9 ( 5 ) and Ph 2 CH 2 Ru 6 C(CO) 14 ( 6 ) have been prepared and characterized by 1 H and 13 C-and 17 O-NMR spectroscopy. Strong shielding effects are caused by the metal valence electrons on the 1 H- and 13 C-NMR chemical shifts of aromatic protons and carbons in π-coordinated ring(s) diphenylmethane. Generally, the order of these shielding effects on the nuclei of the aromatic rings in 1 H-NMR was Co 4 (CO) 9 6 C(CO) 14 3 and in 13 C-NMR Co 4 (CO) 9 3 6 C(CO) 14 . In addition, aromatic solve…

LigandChemical shiftOrganic Chemistrychemistry.chemical_elementAromaticityDiphenylmethanePhotochemistryBiochemistryMedicinal chemistryRutheniumInorganic Chemistrychemistry.chemical_compoundChromiumchemistryMaterials ChemistryPhysical and Theoretical ChemistryMethyleneCobaltJournal of Organometallic Chemistry
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Harvesting Fluorescence from Efficient Tk -> Sj (j, k > 1) Reverse Intersystem Crossing for ??* Emissive Transition-Metal Complexes

2013

Using a bimetallic Au(I) complex bearing alkynyl-(phenylene)3-diphosphine ligand (A-3), we demonstrate that the fluorescence can be exquisitely harvested upon T1 → Tk (k > 1) excitation followed by Tk → Sj (j, k > 1) intersystem crossing (ISC) back to the S1 state. Upon S0 → S1 355 nm excitation, the S1 → T1 intersystem crossing rate has been determined to be 8.9 × 108 s–1. Subsequently, in a two-step laser pump–probe experiment, following a 355 nm laser excitation, the 532 nm T1 → Tk probing gives the prominent blue 375 nm fluorescence, and this time-dependent pump–probe signal correlates well with the lifetime of the T1 state. Careful examination reveals the efficiency of Tk → Sj (j, k > …

LigandChemistryPhotochemistryInternal conversion (chemistry)FluorescenceSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsGeneral EnergyIntersystem crossingTransition metalPhenylenePhysical and Theoretical ChemistryPhosphorescenceta116ExcitationThe Journal of Physical Chemistry C
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Light-induced decarboxylation in a photo-responsive iron-containing complex based on polyoxometalate and oxalato ligands.

2016

A new iron-oxalato polyoxometalate exhibits a remarkable photocoloration effect in the solid state based entirely on an intramolecular process.

LigandDecarboxylation02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry01 natural sciencesOxalate0104 chemical scienceschemistry.chemical_compoundElectron transferChemistrychemistryIntramolecular forceMössbauer spectroscopyPolyoxometalate0210 nano-technologyDerivative (chemistry)Chemical science
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