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1.
The photoluminescence properties of different concentrations of Sm3+ ions doped sodium fluoroborate (SFB) glasses of composition Na2O–LaF3–CaF2–AlF3–B2O3–SmF3 have been investigated. The energy level analysis is carried out using free-ion Hamiltonian model. The Judd–Ofelt intensity parameters are used to evaluate the laser characteristic parameters such as spontaneous transition probability, radiative lifetime and fluorescence branching ratio for 4G5/2  6HJ (J = 5/2, 7/2, 9/2 and 11/2) emission transitions of Sm3+ ion. The principal photoluminescence transitions of interest are identified by recording the emission spectra for different Sm3+ ion concentrations and measuring their emission cross-sections, integrated absorption cross-sections and optical gain parameters. The decay profiles from the 4G7/2 excited manifold state to its lower lying energy levels have been recorded by monitoring the excitation and emission wavelengths at 402 and 600 nm, respectively. The dependence of effective fluorescence lifetime on the Sm3+ concentration is also discussed.  相似文献   

2.
S. Rada  P. Pascuta  M. Rada  E. Culea 《Journal of Non》2011,357(19-20):3405-3409
Glasses of the system xSm2O3?(100-x)[6TeO2? 4V2O5] where 0  x  50 mol% were prepared and investigated. IR and UV–VIS spectra show that with increase x, the network continuity breaks down with the formation of the larger numbers of non-bridging oxygen. The accommodation of the network with the excess of oxygen ions is possible by the depolymerization of the vanadate network in shorter chains, especially ortho- and pyrovanadate structural units. In order to improve the local orders and to develop crystalline phases the glass samples were kept at 275° C for 7 h. Some structural changes were observed and new crystalline phases, namely Te2V2O9 and SmVO4 crystalline phases appeared in the structure of the samples. Our UV–VIS spectroscopic data show the conversion of the Sm+ 3 to Sm+ 2 species in same time with the oxidation of V+ 3, + 4 to V+ 5 ions.  相似文献   

3.
Al2O3–ZrO2 (Y2O3) nanopowders containing 5, 10 and 15 wt% ZrO2 were synthesized by aqueous sol–gel method using aluminum sec-butoxide and zirconium butoxide as precursors. BET analysis shows that, increasing the zirconia content results in a decrease in surface area, 152, 125 and 121 m2/g, and an increase in pore size, 5.63, 9.79 and 11.05 nm for 5, 10 and 15 wt% ZrO2, respectively. Furthermore, a shift toward higher temperatures is observed for transition of transitional aluminas to stable α-alumina phase through increasing the zirconia content. SEM micrograph of calcined nanopowders revealed nanosize spherical particles in the range of 15–75 nm.  相似文献   

4.
Photoluminescence properties of Sm3+, Dy3+, and Tm3+-doped transparent oxyfluoride silicate glass ceramics containing CaF2 nanocrystals were reported. Emission bands of 4G5/2  6H5/2 (562 nm), 4G5/2  6H7/2 (598 nm), 4G5/2  6H9/2 (645 nm) and 4G5/2  6H11/2 (706 nm) for the Sm3+: glass and glass ceramic, with an excitation at 6H5/2  4F7/2 (402 nm) have been recorded. Of them, 4G5/2  6H7/2 (598 nm) has shown a bright orange emission. With regard to the Dy3+: glass, a bright fluorescent yellow emission at 575 nm (4F9/2  6H13/2) and blue emission at 481 nm (4F9/2  6H15/2) have been observed, apart from 662 nm (4F9/2  6H11/2) emission transition with an excitation at 386 nm (6H15/2  4I13/2 + 4F7/2) wavelength. Emission bands of 1G4  3F4 (650 nm) and 1G4  3H5 (795 nm) transitions for the Tm3+: glass and glass ceramic, with an excitation at 3H6  1G4 (467 nm) have been observed. Of them, 1G4  3F4 (650 nm) has shown bright red emission. Decay lifetime measurements were also carried out for all the observed Sm3+, Dy3+, and Tm3+-doped glass and glass ceramic emission bands.  相似文献   

5.
《Journal of Non》2005,351(8-9):623-631
Na2O–CaO–ZrO2–SiO2 glass compositions with ZrO2 contents of up to 20 mol% were melted. Up to 12.3 mol% ZrO2 could be dissolved into the glasses. Melting temperatures ⩾1450 °C were required to remove seed and produce a melt that could be cast. Addition of ZrO2 caused an increase in the glass transition and crystallization temperatures. Glasses crystallized at temperatures ⩾1050 °C with Keldyshite and Parakeldyshite (Na2O · ZrO2 · 2SiO2) as the crystalline phases. Addition of up to 4.6 mol% ZrO2 caused an increase in the hydrolytic resistance of the glass, with further additions having little effect. The suitability of these glasses as hosts for ZrO2-containing radioactive wastes is discussed.  相似文献   

6.
《Journal of Non》2007,353(24-25):2397-2402
Sm-doped borosilicate glasses exposed to β-irradiation with doses from 8 × 105 up to 4 × 109 Gy have been studied by luminescence, Raman and electron paramagnetic resonance (EPR) spectroscopies. The luminescence spectra for pristine and irradiated glasses reveal that the β-irradiation process affects valence state of samarium ions. Intense emission at 684 and 727 nm excited by Ar+ laser (514.5 nm) due to the transition of Sm2+ ion was observed after irradiation. Relative proportion of Sm2+ ions estimated as a function of both Sm2O3 content and irradiation dose has the tendency to increase with increasing irradiation dose. In contrast, the EPR spectra of the studied samples reveal a decrease of the defect content, which are mostly hole defects, produced during irradiation, as a function of Sm2O3 content. Finally, the addition of Sm2O3 leads to a decrease of the Si–O–Si bending vibration modes shift and polymerisation changes under irradiation.  相似文献   

7.
《Journal of Non》2006,352(32-35):3391-3397
Niobium phosphate glasses with composition 37P2O5 · 23K2O · 40Nb2O5 are stable in relation to crystallization during the heating process, exhibit a low critical cooling rate, and are potentially good for nuclear wasteforms. The crystallization of these glasses was evaluated by optical microscopy after proper heat treatments, showing that surface crystallization is the main process occurring during the heat treatment. Two main crystalline phases were observed. These crystalline phases were KNb3O8 and K3NbP2O9. Surface crystal growth rates were measured in the temperature range of 806–972 °C (Tg = 683 °C) for both crystalline phases. Apparent crystallization enthalpies were determined through the Arrhenius plots of lnU vs. 1/T. The enthalpies are 496 kJ/mol and 513 kJ/mol for each crystalline phase, respectively. The surface density of nucleation sites (Ns) on 3 μm diamond paste polished surfaces is (2.4 ± 0.7) × 108 nuclei/m2 for one crystalline phase and (9.8 ± 0.8) × 109 nuclei/m2 for the other crystalline phase, when revealed at 838 °C/17.5 h, and these values show a slight variation depending on the time and the temperature. At the tested temperatures, only one crystal phase appeared inside the volume, and a volume density of nucleation sites Nv = 5 × 106 nuclei/m3 was measured.  相似文献   

8.
The photoluminescence properties of SnO2/Pr3 + co-doped strontium phosphate glasses (75P2O5-25SrO) are studied. An ultrabroad emission band covering blue, green and red is observed in co-doped glasses. In co-doped samples, three downward peaks appear in blue emission region, these coincide with Pr3 + excitation peaks, indicating the energy transfer through cross-relaxation between SnO2 and Pr3 +. The mechanism has been detailed based on the energy level diagrams of SnO2 and Pr3 +. The chromaticity coordinates of the co-doped samples with varying doping ratio of SnO2 to Pr3 + are calculated. The result demonstrates the possibility of generating white light in the SnO2/Pr3 + co-doped phosphate glasses.  相似文献   

9.
《Journal of Non》2006,352(23-25):2553-2557
Macroporous Al2O3–SiO2 glasses doped with Sm2+ have been prepared from a sol–gel system containing aluminum sec-butoxide, tetramethoxysilane, samarium chloride hexahydrate, poly(ethylene oxide), nitric acid, and water. Monolithic gels having interconnected macropores and skeletons are formed by inducing the phase separation parallel to the gelation. The use of aluminum sec-butoxide preheated at 80 °C as the starting material enables the incorporation of Al3+ into the gel skeleton up to 20 mol% in cation ratio. The maximum amount of Al3+, i.e., 20 mol%, is twice as large as that reported in our previous study, where aluminum sec-butoxide was diluted with sec-butanol prior to the hydrolysis. Heat-treatment of Sm3+-doped 20AlO3/2 · 80SiO2 macroporous glass under the reducing atmosphere converts Sm3+ to Sm2+, which is confirmed by the appearance of intense emission peaks attributed to 4f–4f transitions of Sm2+.  相似文献   

10.
Strong blue-green light emitting Eu doped SrAl2O4 phosphor was synthesized by a low-temperature initiated, self-propagating and gas producing combustion process in a very short time (<5 min). The prepared powder was characterized by X-ray diffraction, Fourier-transform infrared spectrometry and scanning electron microscopy. The excitation spectrum shows a peak at 397 nm. Upon excitation at 397 nm, the emission spectrum exhibits a well defined broad band with maximum at 493 nm corresponding to 4f65d  4f7 transition. Electron paramagnetic resonance (EPR) measurements at X-band showed low field signals due to Eu2+ ions in SrAl2O4:Eu.  相似文献   

11.
《Journal of Non》2006,352(36-37):3914-3922
The effect of host glass composition on the optical absorption and fluorescence spectra of Sm3+ and Dy3+ has been studied in mixed alkali borate glasses of the type 67B2O3 · xLi2O · (32  x)Cs2O (x = 8, 12, 16, 20 and 24). The Judd–Ofelt intensity parameters (Ω2, Ω4 and Ω6) are calculated. The radiative transition probabilities (A), radiative lifetimes (τR), branching ratios (β) and integrated absorption cross-sections (Σ) are computed for certain excited states of Sm3+ and Dy3+ ions for different x values in the glass matrix. Stimulated emission cross-sections (σp) are obtained for certain emission transitions of two ions in these mixed alkali borate glasses. These parameters are compared for different x values in the glass matrix. Variation of these parameters with x in the glass matrix has been studied.  相似文献   

12.
Amorphous and nano-crystalline Y3Al5O12:Tb phosphor samples were obtained via a facile combustion method by calcination at various temperatures, using yttrium oxide and aluminum nitrite as starting materials and citric acid as fuel. XRD, FT-IR and TEM results showed that the products were amorphous if prepared at 750 °C, well-crystalline when treated above 850 °C. In addition, partially crystalline YAG phase was observed at 800 °C (in air). The excitation spectra of the samples calcined at 750 °C and 800 °C exhibited some difference in the 230–255 nm range in comparison to those of nano-crystalline YAG:Tb, i.e. an extra band centered at 250 nm was detected via Gaussian curve-fitting. Furthermore, the photoluminescence intensity of as-synthesized samples decreased obviously with increasing the crystallinity under 250 nm excitation. Contrary, it increased monotonously when altering the excitation wavelength to 323 nm. The concentration-dependent emission spectra of samples calcined at 800 °C revealed that the strongest intensity could be obtained with 10% Tb doping. Red-shifts indicated changes of the inter-atomic distances within the Tb3+ coordination polyhedron with increasing Tb concentration. The low temperature photoluminescence of partially crystalline YAG:10% Tb was also investigated, displaying good-resolution but reduced intensity compared to the room-temperature photoluminescence.  相似文献   

13.
We prepared TiO2–ZrO2 binary oxide particles with various Ti/(Zr+Ti) mole ratios (x) from the solutions containing Ti(OC3H7i)4, Zr(OC3H7n)4 and acetylacetone (acac). The spherical particles of 1–5 μm in diameter were obtained via solvothermal treatment at 150 °C. The spheres were anatase at x=1 and amorphous at x=0–0.8. The spheres were thought to be formed through the moderate hydrolysis and nucleation provided by the chelation of the alkoxides by acac. Crystalline TiO2–ZrO2 particles were obtained by the heat treatment of the as-precipitated spheres, and the crystalline phase changed with the Ti/(Zr+Ti) mole ratios. Pure ZrO2 and TiO2, ZrO2 doped with Ti4+, TiO2 doped with Zr4+ and ZrTiO4 phases were produced, and the spherical shape remained after the heat treatment at 500–750 °C.  相似文献   

14.
Gao Tang  Huihua Xiong  Wei Chen  Lan Luo 《Journal of Non》2011,357(11-13):2463-2467
The Sm3+-doped low-phonon-energy (LPE) Ge–Ga–Se–CsI glasses were studied. Upon excitation at 980 nm diode laser, intense 1.25 and 1.49 μm near-infrared fluorescence bands with broad full width at half maximum (FWHM) of 49 and 53 nm were observed, respectively. About 180–300 μs fluorescence lifetimes were obtained for the 1.49 μm emission. The thermal properties and structure of glasses were investigated by differential thermal analysis (DTA) and Raman spectra, respectively. Spectroscopic characteristics of the optical transitions have been calculated by using the Judd–Ofelt theory and evaluated for excited levels.  相似文献   

15.
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   

16.
The effect of Yb3+ concentration on the frequency upconversion (UPC) of Er3+ in PbO–GeO2–Ga2O3 glasses is reported for the first time. Samples were prepared with 0.5 wt% of Er2O3 and different concentrations of Yb2O3 (1.0–5.0 wt%). The green (523 and 545 nm) and red (657 nm) emissions are observed under 980 nm diode laser excitation. The dependence of the frequency UPC emission intensity upon the excitation power was examined and the UPC mechanisms are discussed. An interesting characteristic of these glasses is the increase of the ratio of red to green emission, through an increase of the Yb3+ concentration due to an efficient energy transfer from Yb3+ to Er3+.  相似文献   

17.
《Journal of Non》2006,352(32-35):3636-3641
Sodium phosphoniobate glasses with the composition (mol%) 75NaPO3–25Nb2O5 and containing 2 mol% Yb3+ and x mol% Er3+ (0.01  x  2) were prepared using the conventional melting/casting process. Er3+ emission at 1.5 μm and infrared-to-visible upconversion emission, upon excitation at 976 nm, are evaluated as a function of the Er3+ concentration. For the lowest Er3+ content, 1.5 μm emission quantum efficiency was 90%. Increasing the Er3+ concentration up to 2 mol%, the emission quantum efficiency was observed to decrease to 37% due to concentration quenching. The green and red upconversion emission intensity ratio was studied as a function of Yb3+ co-doping and the Er3+–Er3+ energy transfer processes.  相似文献   

18.
《Journal of Non》2005,351(46-48):3634-3639
Using rare earth coordination polymers with aromatic carboxylic acids as the precursors of rare earth oxide components, with polyethylene glycol (PEG) as the dispersing media, micro-crystalline phosphors RENbO4:Ln3+ (RE = Y, Gd, Lu; Ln = Eu, Tb) have been synthesized by an in situ co-precipitation method. Both X-ray diffraction and scanning electron microscopy have shown that the resultant samples present are crystalline with ‘rice glue ball’ micro-morphology and crystalline grain sizes in the range of 1–2 μm. The luminescent properties of these phosphors have been studied, which show that the best photoluminescent performance is achieved for GdNbO4:Tb3+ or Eu3+. This was because Gd3+ plays an important role to enhance the luminescence of Tb3+ or Eu3+ in an energy transfer process. In addition, the influence of the doping concentration on the fluorescence behaviors has been examined. With increase of the doping concentration from 1 mol% to 5 mol%, both the red emission intensity of Eu3+ and the green emission intensity of Tb3+ increase.  相似文献   

19.
The growth and characterization of zirconium oxide (ZrO2) thin films prepared by thermal oxidation of a deposited Zr metal layer on SiO2/Si were investigated. Uniform ZrO2 thin film with smooth surface morphology was obtained. The thermal ZrO2 films showed a polycrystalline structure. The dielectric constant of the ZrO2 film has been shown to be 23, and the equivalent oxide thickness (EOT) of the ZrO2 stacked oxide is in the range of 3.38–5.43 nm. MOS capacitors with ZrO2 dielectric stack show extremely low leakage current density, less than 10?6 A/cm2 at ?4 V. Consequently, using this method, high-quality ZrO2 films could be fabricated at oxidation temperature as low as 600 °C.  相似文献   

20.
Er3+-doped glass-ceramic SiO2–ZrO2 optical planar waveguides were prepared by the sol–gel route using different SiO2:ZrO2 molar ratios (90:10, 85:15, 80:20 and 75:25). Multilayered films were deposited onto Si(1 0 0) substrates by the dip-coating technique. Structural characterization was performed using vibrational spectroscopy and X-ray diffraction. Some optical properties, densification and surface morphology of these films were investigated as a function of the SiO2:ZrO2 ratio, annealing temperature and time. Optical properties such as refractive index, number of propagating modes and attenuation coefficient were measured at 632.8, 543.5 and 1550 nm, by the prism coupling technique. Uniform surface morphology with roughness less than 0.5 nm. Low losses, less than 0.9 dB/cm at 612.8 nm in the TE0 mode, were measured for the planar waveguides containing up to 25 mol% zirconium oxide. Luminescence of Er3+ in the near infrared was observed for the active nanocomposite.  相似文献   

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