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1.
Reduction of Eu3+  Eu2+ and luminescence of europium (Eu) ions in glass ceramics containing SrF2 nanocrystals have been investigated. The formation of SrF2 nanocrystals in glass ceramics was confirmed by X-ray diffraction (XRD) and transmission electron microscopy (TEM). Blue luminescence of the Eu2+ ions was observed in the Eu doped glass ceramics which were prepared by the heat treatment of the glass in air atmosphere. The double-exponential decay curves of 5D0 state of Eu3+ in the Eu doped glass ceramics indicated that there were two different surroundings of the Eu ions in the glass ceramics.  相似文献   

2.
In this paper, Tb3+/Sm3+ co-doped 38B2O3―31Al2O3―31SrO glass was successfully prepared. After heat treatment, single crystal phase SrAl2B2O7 was precipitated from the parent glass. DTA data showed the glass transition temperature at 625 °C and a sharp exothermic peak at 860 °C. XRD patterns demonstrated a regular evolution from glass to glass ceramics with higher treatment temperature and longer treatment time. From the XRD patterns, we supposed that Tb3+/Sm3+ ions can be most likely contained in the crystal phase. The photoluminescence spectra showed that the crystallization can enhance the emission intensity significantly and there could be an optimum crystallization degree to get the strongest luminescence in glass ceramics. The light scattering of devitrification sample can vary the intensity ratio of Sm3+ and Tb3+ emission. Therefore, as a potential route, rare earth ions doped glass ceramics could be a further research direction of luminescence glasses for white light emitting diodes application.  相似文献   

3.
A Er3+ and Yb3+ co-doped transparent oxyfluoride glass ceramic containing BaF2 nanocrystals has been prepared. The formation of BaF2 nanocrystals in the glass ceramic was confirmed by X-ray diffraction. Intense upconversion luminescence in the Er3+ and Yb3+ co-doped glass ceramic could be observed. Stark splitting of the Er3+ upconversion luminescence peaks in the glass ceramic indicated that Er3+ and Yb3+ had been incorporated into the BaF2 nanocrystals. Near infrared luminescence decay curves showed that the Er3+ and Yb3+ co-doped glass ceramic had higher luminescence efficiency than the precursor glass.  相似文献   

4.
A novel Eu2+ activated 60SiO2–40BaO (mol%) glass ceramics phosphor was prepared and the optical properties were investigated. X-ray diffraction (XRD) and Raman spectra confirmed the formation of Ba2Si3O8 nano-crystals in the glass matrix. The Eu2+ activated glass ceramics exhibited broad emission band centered at 518 nm due to the 4f65d1→4f7 transition of Eu2+. Compared with the glass, the emission intensity of Eu2+ activated glass ceramics was much stronger, and the peak wavelength shifted toward shorter wavelength. The photoluminescence excitation (PLE) spectra of the glass ceramics showed an overlap with the main emission region of an ultraviolet light-emitting diode (UV-LED). According to the photoluminescence (PL) spectra, the CIE chromaticity coordinates of the Eu2+ activated glass and glass ceramics were calculated. The results indicated that the Eu2+ activated glass ceramics containing Ba2Si3O8 nano-crystals can be used as a potential green emitting phosphor under UV-LED excitation.  相似文献   

5.
M. Secu  C.E. Secu  S. Polosan  G. Aldica  C. Ghica 《Journal of Non》2009,355(37-42):1869-1872
Transparent oxyfluoride glass-ceramic in the system SiO2–Al2O3–CaF2–EuF2 containing Eu-doped CaF2 nanocrystals were produced by using the controlled crystallization of melt-quenched glass. X-ray diffraction and transmission electron microscopy data have revealed the formation of the CaF2 nanocrystals of about 65 nm size. Photoluminescence spectra have shown an increase of the splitting of the luminescences associated to the Eu3+ ion along with annealing time which is consistent with the Eu3+ environment evolving from a glassy to a crystalline state.  相似文献   

6.
The upconversion luminescence and near infrared luminescence of the Er3+ ions in transparent oxyfluoride glass-ceramics containing CaF2 nanocrystals have been investigated. The formation of CaF2 nanocrystals in the glass-ceramics was confirmed by XRD. The oscillator strengths for several transitions of the Er3+ ions in the glass and glass-ceramics have been obtained and then the Judd-Ofelt parameters were calculated. The split near infrared emission peaks of the Er3+ ions in the glass-ceramics can be observed because the Er3+ ions have been incorporated into crystalline environment of the CaF2 nanocrystals. The upconversion luminescence intensity of Er3+ ions in the glass-ceramics increased significantly with increasing heat treated time. The transition mechanism of the upconversion luminescence has been ascribed to a two-photon absorption process.  相似文献   

7.
The preparation process and upconversion luminescence properties of the Yb3+ and Tm3+ co-doped glass ceramic containing SrF2 nanocrystals were investigated. In the glass ceramic, the SrF2 nanocrystals were embedded uniformly in the glass matrix. The Yb3+ and Tm3+ ions could be enriched into the precipitated SrF2 nanocrystalline phase, which provide much lower phonon energy than the glass matrix. The glass ceramic exhibited much stronger upconversion luminescence from ultraviolet to visible than the precursor glass. The upconversion luminescence mechanisms were mainly attributed to Yb3+-Yb3+ cooperative upconversion, Yb3+-Tm3+ energy transfer and Tm3+-Tm3+ cross relaxation.  相似文献   

8.
A. Herrmann  S. Fibikar  D. Ehrt 《Journal of Non》2009,355(43-44):2093-2101
Various fluoride, phosphate and borosilicate glasses with known properties and global structure have been doped with Eu3+ (4f6) at doping concentrations between 1018 and 1021 cm?3. By applying reductive melting conditions Eu3+ could partially be transformed to Eu2+ (4f7). Four fluoroaluminate glasses with varying phosphate content between 0 and 20 mol% (FPx), a pure phosphate glass (P100) and two borosilicate glasses with low (DURAN®-like) and high optical basicity (NBS1) have been used for these investigations. The time-resolved fluorescence in the visible range has been studied for both ions. Although static and dynamic fluorescence of Eu3+ and Eu2+ are dramatically different (f–f-transitions for Eu3+; d–f-transitions for Eu2+), glass structure changes have a similar influence on the dynamic fluorescence behavior of both ions. A strongly ionic surrounding due to fluorine ligands as in fluoroaluminate glass samples provides the longest fluorescence lifetime (about 7 ms for Eu3+; about 1.3 μs for Eu2+). Increasing phosphate content decreases the fluorescence lifetime due to more oxygen ligands. Interesting differences have been found for the two borosilicate glasses due to the difference in their optical basicity (Na2O/B2O3 ratio). Measurements indicate a homogeneous distribution of europium ions in most FP samples. NBS1 measurements suggest that two different local europium sites are formed. For Duran-like samples only one specific europium site was found, although these samples show phase separation at high doping concentrations into a SiO2-rich phase and borate- and europium-rich droplets. Fluorescence quenching due to energy transfer from Eu2+ to Eu3+ could be found for co-doped samples; Eu3+-doped samples show no fluorescence quenching.  相似文献   

9.
Tb3+ doped transparent oxyfluoride glass ceramics containing BaGdF5 nanocrystals were prepared. The transmission spectra, photoluminescence spectra, decay time and X-ray excited luminescence spectra of the Tb3+-doped glass and glass ceramics were investigated. Energy transfer from Gd3+ to Tb3+ has been observed in the glass and glass ceramics. The emission intensity of green band (5D4  7FJ) of the Tb3+-doped glass ceramics is enhanced compared with that of the glass under ultraviolet and X-rays, which could be attributed to that the generation of BaGdF5 nanocrystals with low phonon energy reduces the non-radiative transitions.  相似文献   

10.
The Er3+ doped transparent oxyfluoride glass ceramics were obtained by appropriate heat treatment of the precursor glasses with composition (mol%) 50SiO2-xPbF2-(50 − x)PbO-0.5ErF3. The microstructure and optical properties of the glasses and glass ceramics were determined by differential scanning calorimetry (DSC), X-ray diffraction (XRD), absorption spectra and luminescence spectra. The intensity of upconversion luminescence significantly increased in glass ceramics compared to that in precursor glass. The emission bands centered around 660 nm (4F9/2 → 4I15/2) and 410 nm (2H9/2 → 4I15/2) were simultaneously observed in glass ceramics but cannot be seen in the corresponding precursor glass. The influence of different PbF2 content on the microstructure and upconversion luminescence of the samples was analyzed in detail. The results indicated that with the increase of PbF2 content, the Ω2 was almost the same and the ratios of red to green upconversion luminescence decreased in glass ceramics.  相似文献   

11.
The enhanced fluorescence of Eu(DBM)3Phen(DBM: dibenzoylmethide; Phen: phenanthroline) by Tb(DBM)3Phen in a poly(methyl methacrylate) (PMMA) has been studied. A combinatorial methodology was adopted to allow rapid optimization of the fluorescence enhancement conditions of thin-film samples in arrays of microwells. Based on Eu(DBM)3Phen doped PMMA, three material libraries were generated in order to compare the effects of species identity and Tb(DBM)3Phen content to the effect of other complexes containing enhancing ions (La3+, Gd3+, Dy3+, Y3+, Ce3+) on the luminescence efficiency of the Eu3+ complex in PMMA. The fluorescence enhancement of Eu(DBM)3Phen in PMMA is considered to originate from intramolecular and intermolecular energy transfer processes.  相似文献   

12.
Eu/Tb codoped aluminoborosilicate glasses were fabricated by high temperature melting-quenched technique and their luminescence properties were investigated by excitation and emission spectra. Under 376 nm excitation, blue, green and red emission bands were simultaneously observed at 425 nm, 485 nm, 540 nm and 611 nm, respectively. The broad blue emission band centered at 425 nm was originated from the reduced Eu2+ ions, which were reduced from Eu3+ ions at high temperature in an ambient atmosphere and the reduction process may be related with the optical basicity of glass matrix. A complex bright white light emission was obtained for 0.5 mol% Eu2O3, 0.5 mol% Tb2O3 codoped aluminoborosilicate glass with CIE-X = 0.31 and CIE-Y = 0.33. The energy transfer among Eu3+, Eu2+ and Tb3+ ions was also discussed.  相似文献   

13.
《Journal of Non》2007,353(24-25):2431-2435
Y3+(La3+), Eu3+ and Bi3+ ions co-doped sol–gel silica glasses were synthesized. Photoluminescence spectra show that there is energy transfer from Bi3+ ions to the emission band of Eu3+ ions. The co-dopants Y3+ or La3+ have strong effects on the local structure and luminescence of Eu3+ ions. For 0.5 mol% Eu3+ ions doped glasses, the co-doping of 1 mol% Bi3+ and 1 mol% Y3+ is the most appropriate for the sensitization from Bi3+ to Eu3+. The sensitization effectiveness from Bi3+ ions to Eu3+ ions was studied by changing the amount of Bi3+ and Y3+, and clusters containing rare earth ions and Bi3+ ions dominate the energy transfer processes. The comparison of luminescent R-values (the intensity ratio of 5D0  7F2/5D0  7F1 in Eu3+ ions) between glasses containing La3+ and containing Y3+ verifies the formation of clusters in sol–gel glasses. As a favorable configuration for energy transfer, the accurate design and synthesis of clusters-contained glasses may provide a new kind of luminescent materials.  相似文献   

14.
The Eu3 +/Tb3 +/Tm3 + triply-doped glasses with the composition of CaO―Al2O3―B2O3―RE2O3 (RE = Eu,Tb,Tm) have been synthesized by melt quenching method. The photoluminescence of these Eu3 +/Tb3 +/Tm3 + triply-doped glasses (CaAlB:RE3 +) were studied and the emission spectra combining with blue, green and reddish orange bands were observed. Under 360 nm wavelength excitation the white light emission is achieved when the concentration (x) of Tm3 + in Ca0.931 ?xAlB:Eu3 +0.038,Tb3 +0.031,Tm3 +x glass is in the range of 0.0013-0.011 per mol matrix. In addition, the energy transfer (ET) between Tb3 + and Eu3 + ions in Eu3 +/Tb3 +/Tm3 + triply-doped glasses was validated and the electric dipole–dipole interaction is responsible for the ET process of Tb3 +  Eu3 + at low concentrations. Hence, the Eu3 +/Tb3 +/Tm3 + triply-doped aluminoborate glass could be a potential candidate for white LEDs.  相似文献   

15.
The new calcium aluminoborate glasses with the composition of CaO–Al2O3–B2O3–RE2O3 (RE = Dy and Tb) were synthesized and the luminescence of Dy3+ and Tb3+ was investigated. The results show that the emission intensity of Tb3+ ion was enhanced when introducing Dy3+ ion into CaO–Al2O3–B2O3–Tb2O3 glass due to the energy transfer processes between Dy3+ and Tb3+. The energy transfer efficiencies, transfer probabilities as well as donor–acceptor critical distances were also calculated. The energy transfer mechanism between Dy3+ and Tb3+ ions is electric dipole–dipole interaction, which can be concluded by both fluorescence decay and emission intensity ratio varieties.  相似文献   

16.
The photoluminescence properties of silicate glasses, singly doped with europium ions and co-doped with europium ions and Al powder, have been characterized by the absorption, excitation, and emission spectroscopies. The absorption edge in the absorption spectra shows a large red shift from 320 nm to 405 nm. Under near-ultraviolet (NUV) excitation, sample, doped with Eu3+ emit intense red light while those co-doped with Eu3+ and Al give intense cyan emission. The influences of the glass compositions on the spectroscopic properties are also discussed. These glasses may be potential candidates for light-emitting diodes (LEDs).  相似文献   

17.
The tetragonally double alkaline rare earth molybdates NaRe(MoO4)2 (Re = Y, La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, and Er) micro‐particles in aqueous solution of Re(NO3)3 and Na2MoO4 were prepared hydrothermally by a facile and effective EDTA‐assisted method, and investigated by XRD, SEM, FE‐SEM, photoluminescence (PL) excitation and emission spectra. The results showed that the radii of Re ions, pH and the molar ratio of Re(NO3)3/Na2MoO4 in the synthesis solution play an important role in controlling sizes, morphologies and luminescent properties of the final products. And the possible formation mechanism for the bipyramid‐like structure and role of EDTA were discussed in detail. The microstructure and PL property of NaYxLa1‐x(MoO4)2:10%Eu3+ was investigated, and it showed that NaY0.5La0.5(MoO4)2 exhibited regular sphere‐like morphology and emitted the stronger red emission with better color purity than other products. When Tm3+, Dy3+ and Eu3+ with appropriate concentrations were used as dopants to modify this bipyramid NaY(MoO4)2 material, the white light emission material of NaY(MoO4)2:1%Tm3+‐11%Dy3+‐0.6%Eu3+ was successfully synthesized and its CIE chromaticity coordinates is (0.33, 0.33), which is the standard white light point. These novel white‐light‐emitting NaY(MoO4)2:1%Tm3+‐11%Dy3+‐0.6%Eu3+ with single phase would be a promising material in the WLED field.  相似文献   

18.
A series of Eu ion-doped aluminoborosilicate glasses was prepared by melt-quenching method and characterized by spectroscopic techniques, including Fourier transform infrared (FTIR), absorption, photoluminescence (PL), and electron paramagnetic resonance (EPR). The FTIR spectra showed that various glass structures formed when Al2O3 was partially replaced by B2O3. The PL characterization revealed that the emission intensity of Eu2+ ions firstly increased and then decreased with an increasing amount of Al2O3 replaced by B2O3. Meanwhile, the emission intensity ratio of [Eu2+]/[Eu3+] also followed the same trend. The EPR spectra confirmed the concentration variation of Eu2+ ions in the glass samples, which agreed well with the PL results. The possible mechanism of the effect of the glass network structure on the reduction behavior of Eu ions is discussed.  相似文献   

19.
Qiqi Yan  Yinyao Liu  Wei Wang  Guorong Chen 《Journal of Non》2011,357(11-13):2472-2474
In the paper, we report the luminescence behaviors of Eu2+-doped chalcohalide glasses. Composition of glass matrix is 37.5GeS2-22.5Ga2S3-40CsCl (mol%) with the concentration of Eu2+ in the range of 0.1–0.25 (mol%). The optimal Eu2+ doping concentration was 0.15 mol% at which the glass exhibited an enhanced emission peaking at 434 nm with a full width at half maximum (FWHM) about 80 nm with the excitation at 395 nm.  相似文献   

20.
《Journal of Non》2006,352(28-29):3047-3051
A modified wet-chemical synthesis technology was put forward to fabricate Eu3+/Dy3+ doped with YNbxP1−xO4 and YNbxV1−xO4 phosphors with varying x from the assembly of multicomponent hybrid precursors. The morphologies have been found to be 1–2 μm crystalline spheres using XRD and SEM. The red photoluminescence intensity reaches the strongest in YNb0.8P0.2O4:Eu3+ and YNb0.1V0.9O4:Eu3+ phosphors and the red to orange intensity ratio (RO) values decrease with the content of P(V) increasing. Besides this, the optimum concentration for Dy3+ luminescence in YNb0.5P0.5O4 is 1 mol%, while that in YNb0.5V0.5O4 is 0.5 mol% or lower than 0.5 mol%. The yellow to blue intensity ratio (YB) value of Dy3+ increases when the Dy3+ concentration increases from 0.5 to 8 mol% in YNb0.5P0.5O4; however, that of Dy3+ does not vary much in YNb0.5V0.5O4 matrix.  相似文献   

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