Search results for "Photon upconversion"

showing 10 items of 43 documents

Purely organic Vis-to-UV upconversion with an excited annihilator singlet beyond 4 eV

2022

The conversion of visible light into high-energy UV photons via sensitized triplet–triplet annihilation (TTA-UC) could pave the way for several energy-demanding applications. However, only a handful of annihilator chromophores for Vis-to-UV upconversion are known and the current limit for the excited-state energy of the UV emitter in TTA-UC schemes is below 4 eV, i.e., in the spectral region (>310 nm) where the sun still provides a considerable photon flux. Herein, we present a novel biphenyl-based annihilator with a highly fluorescent singlet state at 4.04 eV. This annihilator can be combined with a widely-used TADF sensitizer to yield an efficient blue-light (2.77 eV) driven upconversion …

AnnihilatorMaterials sciencePhotonExcited stateMaterials ChemistryGeneral ChemistrySinglet stateChromophoreAtomic physicsFluorescencePhoton upconversionVisible spectrumJournal of Materials Chemistry C
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Cover Feature: Triplet–Triplet Annihilation Upconversion in a MOF with Acceptor‐Filled Channels (Chem. Eur. J. 5/2020)

2019

ChemistryFeature (computer vision)Organic ChemistryMetal-organic frameworkCover (algebra)General ChemistryTriplet triplet annihilationHybrid materialAcceptorMolecular physicsCatalysisPhoton upconversionChemistry – A European Journal
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Up-conversion processes in NaLaF4:Er3+

2009

abstract Structural and spectroscopic investigation of NaLaF 4 :Er 3+ material at different doping concentrations ispresented. X-ray diffraction patterns, up-conversion luminescence spectra and decay curves for 2 H 9/2 ? 4 I 15/2 , 4 S 3/2 ? 4 I 15/2 and 4 F 9/2 ? 4 I 15/2 optical transitions in the material are shown and possibleexcitation routes are discussed. Raman spectrum for the undoped material is presented and the effectivephonon energy of the material is estimated. Based on the obtained results application of rare-earth dopedNaLaF 4 in the field of up-conversion phosphors is evaluated. 2009 Elsevier B.V. All rights reserved. 1. IntroductionFor many years rare-earth (RE) doped materi…

ChemistryOrganic ChemistryDopingAnalytical chemistryNonlinear opticsPhosphorAtomic and Molecular Physics and OpticsPhoton upconversionElectronic Optical and Magnetic MaterialsIonInorganic Chemistrysymbols.namesakesymbolsElectrical and Electronic EngineeringPhysical and Theoretical ChemistryAtomic physicsTime-resolved spectroscopyLuminescenceRaman spectroscopySpectroscopyOptical Materials
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The role of Nb in intensity increase of Er ion upconversion luminescence in zirconia

2014

It is found that Nb co-doping increases the luminescence and upconversion luminescence intensity in rare earth doped zirconia. Er and Yb-doped nanocrystalline samples with or without Nb co-doping were prepared by sol-gel method and thermally annealed to check for the impact of phase transition on luminescence properties. Phase composition and grain sizes were examined by X-ray diffraction; the morphology was checked by scanning- and high-resolution transmission electron microscopes. Both steady-state and time-resolved luminescence were studied. Comparison of samples with different oxygen vacancy concentrations and different Nb concentrations confirmed the known assumption that oxygen vacanc…

CrystallographyTetragonal crystal systemMaterials scienceNanocrystalDopingAnalytical chemistryGeneral Physics and AstronomyCubic zirconiaLuminescenceNanocrystalline materialPhoton upconversionIonJournal of Applied Physics
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Nanohybrid for Photodynamic Therapy and Fluorescence Imaging Tracking without Therapy

2018

Theranostic upconversion nanoparticles (UCNPs) are ideal candidates for personalized medicine. We present a smart, easy-to-prepare nanohybrid (NH) suitable for NIR-theragnosis and imaging tracking without triggering therapy simultaneously. The photophysical features of each component have been carefully selected in order to maximize the capabilities for theragnosis, in particular, the upconversion emission and the photosensitizer absorption. In addition, NH presents a fluorescent marker with one-photon absorption in the green and two-photon absorption cross-section at NIR wavelengths where the UCNP does not absorb, thus enabling innocuous tracking. Thus, the NH consists of NaYF4:Yb, Er, Tm …

Fluorescence-lifetime imaging microscopyMaterials scienceGeneral Chemical Engineeringmedicine.medical_treatmentPhotodynamic therapy02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyTracking (particle physics)Photochemistry01 natural sciencesFluorescencePorphyrinPhoton upconversion0104 chemical scienceschemistry.chemical_compoundchemistryMaterials ChemistrymedicinePhotosensitizer0210 nano-technologyAbsorption (electromagnetic radiation)Chemistry of Materials
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Multicolor upconversion luminescence of GdVO4:Ln3+/Yb3+ (Ln3+ = Ho3+, Er3+, Tm3+, Ho3+/Er3+/Tm3+) nanorods

2016

Lanthanide-doped GdVO4 nanorods that exhibit upconversion emission under 982 nm excitation have been prepared by a facile room-temperature chemical co-precipitation method followed by a subsequent annealing at temperatures of 600 degrees C, 800 degrees C and 1000 degrees C. Multicolor upconversion emission, including white, was achieved by tuning the concentrations of dopant lanthanide ions (Ho3+, Er3+, Tm3+ and Yb3+) in GdVO4. It is found that four GdVO4 samples emit light with the white chromaticity coordinates of (0.326, 0.339), (0.346, 0.343), (0.323, 0327) and (0.342, 0.340) respectively, under a single-wavelength NIR excitation. These coordinates are very close to the standard equal e…

LanthanideMaterials scienceDopantWhite lightAnnealing (metallurgy)Process Chemistry and TechnologyGeneral Chemical EngineeringMulticolor emissionAnalytical chemistry02 engineering and technologyPhoshpors010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesPhoton upconversion0104 chemical sciencesIonLanthanidesNanorodVanadatesChromaticity0210 nano-technologyExcitationUpconversionDyes and Pigments
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Lanthanide-doped Y3Ga5O12 garnets for nanoheating and nanothermometry in the first biological window

2018

Abstract Absorption and luminescence spectra in the first biological window of Nd3+ single-doped and Er3+-Yb3+ co-doped Y3Ga5O12 nano-garnets have been studied to evaluate their potential use as simultaneous optical nanoheaters and nanothermometers in biomedicine. Nd3+-doped nano-garnets uses the 808 nm laser radiation, resonant with the largest absorption peak of the 4I9/2 → 4F5/2 transition, for both heating the nanoparticle and populating the 4F3/2 emitting level. Changes in the relative intensities of different emission peaks between Stark levels of the 4F3/2 (R1,2)→4I9/2 (Z1-5) transition can be directly related to the temperature of the nano-garnet. On the other hand, the Yb3+/Er3+com…

LanthanideMaterials scienceOrganic ChemistryDopingNanoparticle02 engineering and technologyRadiation010402 general chemistry021001 nanoscience & nanotechnologyLaser01 natural sciencesAtomic and Molecular Physics and OpticsPhoton upconversion0104 chemical sciencesElectronic Optical and Magnetic MaterialsIonlaw.inventionInorganic ChemistrylawElectrical and Electronic EngineeringPhysical and Theoretical ChemistryAtomic physics0210 nano-technologyAbsorption (electromagnetic radiation)SpectroscopyOptical Materials
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Hydrogen bond-mediated conjugates involving lanthanide diphthalocyanines and trifluoroacetic acid (Lnpc2@TFA): Structure, photoactivity, and stability

2020

The interaction between lanthanide diphthalocyanine complexes, LnPc2 (Ln = Nd, Sm, Eu, Gd, Yb, Lu

LanthanideTFA conjugatePharmaceutical Science010402 general chemistryPhotochemistryphotostability01 natural sciencessinglet oxygenAnalytical Chemistrylcsh:QD241-441lanthanide diphthalocyanineschemistry.chemical_compoundUV-Vis spectralcsh:Organic chemistryTFA conjugatesDrug DiscoveryTrifluoroacetic acidMoleculePhysical and Theoretical Chemistrylanthanide diphthalocyanine010405 organic chemistryHydrogen bondSinglet oxygenOrganic Chemistryphoton upconversionChromophore0104 chemical scienceschemistryChemistry (miscellaneous)PhthalocyanineMolecular MedicineDensity functional theoryMolecules
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Cubic and rhombohedral Ba4Lu3F17:Er3+ in transparent glass ceramics: Crystallization and upconversion luminescence

2018

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LuminescenceMaterials scienceGlass ceramicsBiophysicsAnalytical chemistry02 engineering and technology01 natural sciencesBiochemistrylaw.inventionlaw0103 physical sciencesActivator (phosphor):NATURAL SCIENCES:Physics [Research Subject Categories]CeramicCrystallizationThermal analysis010302 applied physicsSite-selective spectroscopyBa4Lu3F17General Chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsPhoton upconversion3. Good healthNanocrystalvisual_artvisual_art.visual_art_mediumCrystallite0210 nano-technologyLuminescenceUpconversionJournal of Luminescence
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Upconversion luminescence of a transparent glass ceramics with hexagonal Na(Gd,Lu)F4 nanocrystals

2017

Novel Er3+ doped transparent glass ceramics containing hexagonal Na(Gd,Lu)F4 nanocrystals were prepared from oxyfluoride glasses. The distribution of rare earth ions in the crystalline and glassy phase has been analyzed by X-ray diffraction and erbium luminescence decay kinetics measurement. A strong deviation of rare earth ion content in fluoride nanocrystals in comparison to the base glass has been observed. Preferential incorporation of Gd3+ over Lu3+ ions in the fluoride lattice leads to the stabilization of hexagonal Na(Gd,Lu)F4 structure and prevents the formation of cubic fluorite type solid solutions. A considerable enhancement of upconversion luminescence correlates with the format…

LuminescenceMaterials sciencePhysics::Opticschemistry.chemical_elementNanotechnology02 engineering and technology010402 general chemistry01 natural sciences7. Clean energyFluoriteErbiumCondensed Matter::Materials Sciencechemistry.chemical_compound:NATURAL SCIENCES:Physics [Research Subject Categories]Physics::Atomic and Molecular ClustersMaterials ChemistryOxyfluorideMechanical EngineeringDopingMetals and AlloysTransparent glass ceramics021001 nanoscience & nanotechnologyPhoton upconversion0104 chemical sciencesNanocrystalchemistryMechanics of MaterialsPhysical chemistryEr30210 nano-technologyLuminescenceFluorideUpconversionSolid solutionJournal of Alloys and Compounds
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