Search results for "luminescence."

showing 10 items of 1568 documents

Interpretation of the photoluminescence decay kinetics in metal halide perovskite nanocrystals and thin polycrystalline films

2020

Abstract In this paper we present critical analysis of different points of view on interpretation of the photoluminescence (PL) decay kinetics in lead halide perovskites prepared in the form of well passivated nanocrystals (PNCs) or thin polycrystalline layers. In addition to the literature data, our own measurements are also considered. For PNCs, a strong dependence of the PL lifetimes on the type of passivating ligand was observed with a consistently high PL quantum yield. It is shown that such ligand effects, as well as a decrease in the PL lifetime with decreasing temperature, are well qualitatively explained by the phenomenological model of thermally activated delayed luminescence, in …

QuenchingPhotoluminescenceMaterials scienceKineticsBiophysicsQuantum yield02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesBiochemistryperovskite solar cellsAtomic and Molecular Physics and Optics0104 chemical sciencesCondensed Matter::Materials SciencenanocrystalsChemical physicsPhenomenological modelCrystallite0210 nano-technologyLuminescenceperovskitePerovskite (structure)Journal of Luminescence
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Photoluminescence in gamma-irradiated alpha-quartz investigated by synchrotron radiation

2004

Abstract We report an experimental investigation of the photoluminescence, under excitation by synchrotron radiation within the absorption band at 7.6 eV , induced in γ-irradiated α-quartz. Two emissions centered at 4.9 and 2.7 eV are observed at low temperature: the former decreases above 40 K , whereas the second band exhibits an initial slight increase and its quenching is effective above 100 K . Furthermore, the decay kinetics of both emissions occur in a time scale of nanoseconds: at T=17.5 K we measured a lifetime τ∼1.0 ns for the photoluminescence at 4.9 eV and τ∼3.6 ns for that at 2.7 eV . These results give new insight on the optical properties associated with defects peculiar of c…

QuenchingRadiationPhotoluminescenceChemistryRadiochemistryGamma rayAnalytical chemistrySynchrotron radiationCrystallographic defectoptical fibers radiation effects radiation-induced attenuationAbsorption bandPhotoluminescence excitationIrradiationInstrumentation
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Luminescence and ultraviolet excitation spectroscopy of SrI2 and SrI2:Eu2+

2013

Abstract We report measurements of luminescence and its ultraviolet excitation spectra in SrI2 and SrI2:Eu2+ at temperatures of 10 and 300 K. Attention is focused on determining the exciton energy and its temperature shift from features of the excitation spectra and limits placed by absorption spectroscopy on a 120 μm thin crystal, on observation of a broadened Eu emission band attributed to trace Eu associated with oxygen in nominally undoped crystals, and on adding observations concerning the 3.4 eV band at low temperature attributed by Pustovarov et al. to the self-trapped exciton.

RadiationAbsorption spectroscopyExcitonchemistry.chemical_elementSynchrotron radiationmedicine.disease_causeOxygenStrontium iodidechemistry.chemical_compoundchemistrymedicinePhotoluminescence excitationAtomic physicsLuminescenceInstrumentationUltravioletRadiation Measurements
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Luminescence and transient absorption in ZnWO4 and ZnWO4–Fe crystals

2001

Abstract The transient absorption spectra and relaxation kinetics under pulse electron beam excitation in ZnWO 4 and ZnWO 4 –Fe, as well as luminescence spectra and decay kinetics, were studied. It is shown that a fraction of transient absorption is due to luminescence center excited state. The energy transfer from intrinsic excitations to the defect or impurity states is not efficient. The role of Fe-impurities in the decay process is discussed.

RadiationAbsorption spectroscopyImpurityChemistryExcited stateRelaxation (NMR)Ultrafast laser spectroscopyAtomic physicsLuminescenceAbsorption (electromagnetic radiation)InstrumentationExcitationRadiation Measurements
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Thermostimulated recombination processes in LiBaF3 crystals

2004

Abstract The creation of radiation defects in LiBaF 3 crystals at 10 K and the processes of their thermostimulated recombination are investigated. The methods of optical absorption, thermal bleaching of color centers, thermostimulated luminescence and fractional glow technique are used. The radiation defects anneal in a multi-stage process accompanied with thermo-luminescence at 20, 46, 105, 130, 170, 210 and 270 K . Differences in the optical absorption spectra measured before and after the TSL peaks are obtained and recombination parameters are determined. The TSL peak at 20 K arises from the delocalization of H-centers. The presence of two TSL peaks related to V K -centers at 105 and 130…

RadiationAbsorption spectroscopybusiness.industryChemistryRadiationCrystallographic defectThermoluminescenceMolecular physicsDelocalized electronOpticsLuminescencebusinessAbsorption (electromagnetic radiation)InstrumentationRecombinationRadiation Measurements
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Electron paramagnetic resonance of doped and undoped BaFBr detected by recombination luminescence

1998

Abstract The recombination processes in the X-ray storage phosphor BaFBr:Eu2+ was investigated by measuring the microwave-induced changes in the recombination luminescence in a (high) magnetic field. Besides the resonances of the F(Br−) centre, of the VK(Br−2) centre and of the Eu2+ ground state we observed a line of a hitherto unknown hole centre. The maximum of the luminescence band in which the VK(Br−2) centre could be detected was about 400 nm. The resonance of the unknown hole centre belongs to a luminescence band peaking at about 350 nm.

RadiationChemistryDopingResonancechemistry.chemical_elementlaw.inventionlawIrradiationAtomic physicsGround stateLuminescenceElectron paramagnetic resonanceEuropiumInstrumentationRecombinationRadiation Measurements
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Photo- and thermostimulated processes in α-Al2O3

1995

Abstract We reported on the recombination processes determined by the release of electrons from defects connected with the dosimetric 430 K thermostimulated luminescence (TSL) peak as well as with the 260 K TSL peak. These TSL peaks appear in thermochemically reduced α-Al 2 O 3 crystals containing hydrogen and emission of these TSL peaks corresponds to luminescence of the F-center. The X-ray exposure or UV excitation in the absorption band of F-centers at 6.0 eV of reduced α-Al 2 O 3 crystals doped with acceptor impurities results in the appearance of a broad anisotropic complex absorption band in the spectral region 2.5–3.5 eV and in the appearance of a predominant TSL peak at 430 K. Above…

RadiationChemistryImpurityPhotostimulated luminescenceAbsorption bandDopingAnalytical chemistryAtomic physicsLuminescenceAbsorption (electromagnetic radiation)InstrumentationAcceptorExcitationRadiation Measurements
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Self-trapped holes and recombination luminescence in LiBaF3 crystals

2001

Abstract We investigated electron paramagnetic resonance (EPR) angular dependencies, recombination afterglow and thermostimulated luminescence of undoped LiBaF3 crystals, X-irradiated at low temperatures. EPR parameters of the F2− molecule oriented along the [1 1 0] direction have been obtained. Based on the value of the g-shift Δg=g⊥−gII=0.02, characteristic for the VK-centres in similar perovskites, we propose that we indeed observed the VK-centres, not the H-centres. X-irradiation below 170 K results in creation of a long-time temperature-independent afterglow due to the tunnelling recombination between close electron and hole centres. The F-type electron centres and the VK as well as pr…

RadiationChemistryResonanceElectronThermoluminescenceMolecular physicslaw.inventionAfterglowNuclear magnetic resonancelawElectron paramagnetic resonanceLuminescenceInstrumentationQuantum tunnellingRecombinationRadiation Measurements
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Dosimetry in mixed gamma–neutron radiation fields and energy compensation filters for CaF2:Tm TL detectors

2008

Abstract Strong fields of thermal and epithermal neutrons as used for Boron Neutron Capture Therapy (BNCT) show a relatively small gamma dose. However, for accurate dose estimation, both the neutron as well as the gamma component has to be considered. Different approaches have been studied with various thermoluminescence detectors (TLDs). As a result, CaF2:Tm detectors (TLD-300) are attributed to be most insensitive to thermal neutrons but not tissue-equivalent. In this paper we focus on the measurement of the gamma dose with TLD-300 in mixed irradiation fields. To overcome the disadvantage of being not tissue-equivalent, a study on energy compensation filters was performed. The paper compr…

RadiationChemistrybusiness.industryAstrophysics::High Energy Astrophysical PhenomenaPhysics::Medical PhysicsRadiochemistryGamma rayNeutron radiationThermoluminescenceNeutron temperatureNeutron captureOpticsDosimetryNeutronThermoluminescent dosimeterbusinessInstrumentationRadiation Measurements
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EPR of molybdenum-related defect in CdWO4 crystal

1998

Abstract EPR spectra of a molybdenum-related structure defect have been observed at a temperature of 20 K in CdWO 4 scintillator crystal, being as-grown “blue-coloured”. Mo 95 and Mo 97 isotope superhyperfine ( shf ) splittings have been resolved. Further splittings in EPR spectra have been interpreted as arising from shf interactions with W nuclea. In the present model of the defect, the unpaired spin is localised in the Cd-site position and molybdenum replaces one of the neighbouring W atoms.

RadiationChemistrychemistry.chemical_elementCrystal structureResonance (chemistry)Crystallographic defectSpectral linelaw.inventionCrystalCrystallographyNuclear magnetic resonancelawMolybdenumElectron paramagnetic resonanceLuminescenceInstrumentationRadiation Measurements
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