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1.
Mechanisms of the compositional dependence of blue emission from Nd3+/Tm3+ co-doped Ge–Ga–S–CsBr chalcohalide glasses were investigated. The blue upconversion emissions (centered at 475 nm) due to the Tm3+: 1G4  3H6 transition decreased as the CsBr/Ga ratio in glasses while the other upconversion emissions from the Nd3+ ions increased. Changes in the local environment of rare-earth ions incurred by the CsBr addition significantly increased the excited state absorption within Nd3+ ions. This resulted in the decrease in the Nd3+  Tm3+ energy transfer rates that led to the large decrease in blue upconversion emission.  相似文献   

2.
《Journal of Non》2007,353(13-15):1402-1406
Fluorophosphate glasses of composition P2O5–K2O–MgO–Al2O3–AlF3 and P2O5–K2O–MgO–Al2O3–BaF2 were prepared with different Nd3+ ion concentrations. The absorption and emission spectra in the UV–VIS–NIR region were measured for these glasses. Judd–Ofelt analysis has been carried out using the absorption spectra of 1.0 mol% Nd3+-doped glasses to evaluate the radiative properties for some luminescent levels of the Nd3+ ion. The stimulated emission cross-sections of the 4F3/2  4I11/2 laser transition for the present glasses are found to be higher than for other Nd3+-doped glasses. Branching ratio calculations also revealed the potentiality of the 4F3/2  4I11/2 transition for laser action in these glasses. The observed concentration quenching of the lifetime of the 4F3/2 level is explained as a result of cross-relaxation process between the Nd3+ ions.  相似文献   

3.
《Journal of Non》2007,353(18-21):1910-1915
Glass isotropy could be broken by using the electric field of the 355 nm wavelength delivered by a nanosecond YAG: Nd3+ laser. In this way, pulsed laser-induced birefringence was obtained in the La2O3–B2O3–GeO2 (LBG) glassy system. Buried lines behaving like waveguides were written in glasses using this laser irradiation process. Micro Raman spectra performed in irradiated points of glasses revealed a rotation of the light polarization in agreement with previous results obtained on thermally-poled LBG glasses. However, no orientation effects of irradiated points related to the direction of the laser wave polarization (UV poling) could be clearly evidenced as suggested in our last paper. The interaction of the glass with the electromagnetic field of the UV laser beam can be more probably described by mechanisms based on a densification process.  相似文献   

4.
The environment of Nd3+ ions has been studied using optical absorption spectroscopy and EXAFS at the Nd L3-edge, in a series of soda lime aluminoborosilicate glasses with increasing B2O3 content. The proportion of BO4 units has been determined by 11B MAS NMR in an equivalent glass series with La3+ ions replacing the majority of Nd3+ ions, and complementary information has been obtained by measuring the Nd3+ decay fluorescence times in these latter glasses. In these glasses with low Al2O3 content, the R′ ratio, with R′ = [Na2Oexc] / [B2O3] and [Na2Oexc] = [Na2O] − [Al2O3] − [ZrO2], plays a key role in controlling the structural organization and crystallization resistance, in a similar way as the R ratio in the Dell and Bray model of sodium borosilicate glasses. At R′ > 0.5, the Nd3+ ions are located in a mixed silicate-borate environment and, by slow cooling of the melt, they tend to crystallize within a silicate apatite phase close to the Ca2Nd8(SiO4)6O2 composition. At R′ < 0.5, the structural results are compatible with Nd3+ ions located in a borate-type environment (not excluding Si neighbors), and, by slow cooling of the melt, they segregate with Ca2+ ions within a Si-depleted separated borosilicate phase.  相似文献   

5.
The well known and characterized fast ion conducting (FIC) LiI + Li2S + GeS2 glass-forming system has been further optimized for higher ionic conductivity and improved thermal and chemical stability required for next generation solid electrolyte applications by doping with Ga2S3 and La2S3. These trivalent dopants are expected to eliminate terminal and non-bridging sulfur (NBS) anions thereby increasing the network connectivity while at the same time increasing the Li+ ion conductivity by creating lower basicity [(Ga or La)S4/2] anion sites. Consistent with the finding that the glass-forming range for the Ga2S3 doped compositions is larger than that for the La2S3 compositions, the addition of Ga2S3 is found to eliminate NBS units to create bridging sulfur (BS) units that not only gives an improvement to the thermal stability, but also maintains and in some cases increases the ionic conductivity. The compositions with the highest Ga2S3 content showed the highest Tgs of ∼325 °C. The addition of La2S3 to the base glasses, by comparison, is found to create NBS by forming high coordination octahedral LaS63− sites, but yet still improved the chemical stability of the glass in dry air and retained its high ionic conductivity and thermal stability. Significantly, at comparable concentrations of Li2S and Ga2S3 or La2S3, the La2S3-doped glasses showed the higher conductivities. The addition of the LiI to the glass compositions not only improved the glass-forming ability of the compositions, but also increased the ionic conductivity glasses. LiI concentrations from 0 to 40 mol% improved the conductivities of the Ga2S3 glasses from ∼10−5 to ∼10−3 (Ω cm)−1 and of the La2S3 glasses from ∼10−4 to ∼10−3 (Ω cm)−1 at room temperature. A maximum conductivity of ∼10−3 (Ω cm)−1 at room temperature was observed for all of the glasses and this value is comparable to some of the best Li ion conductors in a sulfide glass system. Yet these new compositions are markedly more thermally and chemically stable than most Li+ ion conducting sulfide glasses. LiI additions decreased the Tgs and Tcs of the glasses, but increased the stability towards crystallization (Tc − Tg).  相似文献   

6.
In this paper we describe fabrication and characterization of rare-earth-doped active tellurite glasses to be used as active laser media for fiber lasers emitting in the 2 μm region. The base composition is (mol%): 75TeO2-20ZnO-5Na2O with different concentrations of Tm3+, Yb3+ and Ho3+ as dopants or co-dopants. Optical properties of doped glasses were studied and pumping at 800 nm and at 980 nm were tested in order to compare the efficiency of two pumping mechanisms. Optical characterization carried out on glasses containing only Tm3+ ions indicated the optimum concentration of Tm2O3 in terms of emission efficiency as 1 wt%. The addition of 5 wt% of Yb2O3 to Tm3+-doped glasses led to the best results in terms of intensity of fluorescence emission and of lifetime values. Yb and Ho co-doped Tm-tellurite glass was measured in emission.  相似文献   

7.
M. Elisa  B. Sava  A. Diaconu  D. Ursu  R. Patrascu 《Journal of Non》2009,355(37-42):1877-1879
The paper presents a study based on luminescence characteristics of phosphate glasses containing Cu2+, Mn4+ and Sb3+. The glass samples obtained by a wet chemical route belong to Li2O–BaO–Al2O3–La2O3–P2O5 oxide system. The oxide composition of the glass samples is calculated to obtain a vitreous network composed of metaphosphate chains bonded by modifier ions (Li+, Ba2+ and La3+) and fluorescent ions. The absorption spectra of the samples were acquired in the UV domain in order to establish the excitation wavelength for each fluorescent ion. The absorption peaks of Sb3+ ion are ranged at 285 nm and 250 nm, Mn2+ ion at 280 nm and 365 nm, Cu2+ ion at 295 nm and 313 nm. The luminescence peaks of Cu2+, Mn4+ and Sb3+ ions are found in the visible domain at different wavelengths, depending on the oxidation state and coordination symmetry of each fluorescent ion. The fluorescence of Sb3+ ion has a strong signal at 450 nm and a weak one at 465 nm, Mn2+ ion shows a fluorescence peak at 600 nm and the pair Cu2+/Cu+ ions reveals a fluorescence emission at 460 nm.  相似文献   

8.
《Journal of Non》2006,352(23-25):2425-2429
IR transmitting glass-ceramics were prepared by isothermal treatments of La2O3–Ga2S3 glasses. The glass-ceramics were characterized by crystalline phases, microstructure, Vickers hardness and mid (3–5 μm) IR transmittance. The Nd2S3-doped La2O3–Ga2S3 glass-ceramics consisting of a large numbers of (LaO)4Ga1.72S4.58, α-(LaO)GaS2 and α-Ga2S3 crystals with <1 μm in size exhibit a high hardness of 5.3 GPa and a mid IR transparency of >60%.  相似文献   

9.
The upconversion properties of Er3+ ions were studied for heavy metal oxyfluoride tellurite glass hosts xPbF2-(100−x)TeO2 under 975 nm excitation. The intense green (529 and 545 nm) and relative weak red (657 nm) emissions corresponding to the transitions 4S3/2 → 4I15/2, 2H11/2 → 4I15/2 and 4F9/2 → 4I15/2, respectively, were simultaneously observed at room temperature. The PbF2 content has an important influence on upconversion luminescence emission. With increasing PbF2 content, the intensities of green (529 nm) and red (657 nm) emissions increase slightly, while the green (545 nm) emission increases significantly. These results indicate that PbF2 has more influence on the green (545 nm) emission than the green (529 nm) and red (657 nm) emissions. The intense green emission observed suggest that Er3+-doped heavy metal oxyfluoride tellurite glasses can become candidates for developing upconversion optical devices.  相似文献   

10.
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   

11.
Rongrong Xu  Ying Tian  Lili Hu  Junjie Zhang 《Journal of Non》2011,357(11-13):2489-2493
TmF3 doped TeO2–ZnO–La2O3 (TZL) glasses and fibers have been prepared by the conventional melt-quenching and suction casting methods, respectively. 2 μm emission properties and energy transfer mechanisms of the TZL glasses and fibers have been analyzed and discussed. The oscillator strength, Judd–Ofelt parameters, radiative transition probability and radiative lifetime of Tm3+ have been calculated based on the absorption spectra and Judd–Ofelt theory. The maximum emission cross-section of Tm3+ is 6.9 × 10?21 cm2 near 2 μm. Emission spectra have been obtained from both TZL fibers and bulk glass when excited with a 794 nm pump. The results of 2 μm emission spectra indicate that the line width of Tm3+ measured in fibers is narrower than that in the bulk glass sample. The peak position of the emission spectra shifts to longer wavelength with increment of the fiber length.  相似文献   

12.
This work reports the structural and spectroscopy characterization of poly(styrene sulfonate) (PSS) films doped with neodymium (Nd) ions. Nd–PSS films were processed using the acid of poly(styrene sulfonate) – H–PSS and neodymium nitrate – Nd(NO3)3; the maximum incorporation of Nd ions in the polymeric matrix was equal 19.3%. The absorption in the UV–Vis–NIR spectral region presents typical electronic transitions of Nd3+ ions, with well resolved peaks. The infrared spectra present the transition bands of PSS with characteristic line shape broadening, and the presence of vibrational modes of N–O groups in the range of 1400–720 cm?1, prove the permanence of Nd(NO3)x, with x = 1, 2 and/or 3, in the H–PSS matrix. UV–Vis site selective photoluminescence data indicate that the incorporation of Nd3+ introduces a blue shift in PSS emission (325–800 nm), decreasing the interaction between adjacent PSS lateral groups (aromatic rings). Nd3+ reabsorption and energy transfer effects between the PSS matrix and Nd3+ were also observed. The IR emission of Nd–PSS films at 1076 nm (4F3/2  4I11/2) present constant efficiency, independent on Nd3+ concentration. The Judd–Ofelt theory was employed to analyze radiative properties. The excitation spectra prove the energy transfer between the polymeric matrix and Nd3+. Complex impedance data was used to probe relaxation processes during the charge transport within the polymeric matrix.  相似文献   

13.
Simple binary sodium and potassium borate glasses containing sulphur were prepared. Depending on the composition of the glass and the quantity of sulphur added the glasses produced were blue, green or yellow. The absorption spectra of these glasses were measured in the range of 300–700 nm.The blue colour is characterized by an absorption band at 585 nm which is attributed to S3?.The green colour is characterized by two absorption bands; the band at 585 nm observed in the spectra of the blue glasses and a more intense band at 390 nm. The latter is attributed to S2? and the green colouration to the presence of both S2? and S3? where the S2? state predominates.  相似文献   

14.
In this paper, [NaGd1‐xNdx](MoO4)2 crystals with x = 0.005–0.05 were grown by Czochralski method at 950 ℃ for 10 hours and subsequently characterized by absorption spectroscopy and fluorescence spectroscopy. The intensity parameters of Nd3+ were calculated by Judd‐Ofelt theory, and the relationship between the parameters and Nd3+ concentration was analyzed. The results show that with the increasing Nd3+ concentration, the oscillator strength, stimulated emission cross‐section, Ωt and spontaneous transition probability decrease slightly, while the fluorescence lifetime decreases significantly. However, the fluorescence branching ratio is almost unchanged with the increasing Nd3+concentration. The [NaGd1‐xNdx](MoO4)2 crystal with (x = 0.01) possesses the highest quantum efficiency of 88.98%, a good fluorescence line‐width of 23 nm, a large value of σem·τf up to 0.55 × 10−22 cm2·s and a stimulated emission cross‐section up to 3.747 × 10−19 cm2 for the transition from 4F3/2 to4I11/2 at 1064 nm. Test results indicate that [NaGd1‐xNdx](MoO4)2 crystals are an excellent gain media for the solid state laser system.  相似文献   

15.
《Journal of Non》2007,353(52-54):4697-4701
The luminescent material europium-activated La2O3 have been prepared by the citric acid and poly (ethylene glycol) (PEG) precursor route. Their structures and optical properties were characterized by FT-IR spectrum, X-ray diffraction (XRD), thermogravimetry-differential thermal analysis (TG-DTA), UV–vis spectroscopy, and photoluminescence (PL) spectra, respectively. The results show considerable enhancement of the photoluminescence, especially the Eu3+ f–f transition excitation lines and the charge transfer band (CT). The samples can exhibit strong red emission centered at 626 nm excited at either the CT band (300 nm) or the Eu3+ f–f transition (396 nm), suggesting the potential application as the red phosphors for ultraviolet light-emitting diodes (LEDs), which can be attributed to the 5D07F2 transition of Eu3+. The remarkable enhancement of color purity of red emission and the concentration quenching of Eu3+ in La2O3 were also observed with increasing Eu3+ doped concentration.  相似文献   

16.
《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   

17.
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   

18.
Tb3+ doped X-ray conversion glassy screen with an industrial scale (50 mm × 50 mm × 12 mm) was successfully fabricated, and its luminescent properties and applications in CCD imaging system were investigated. Results showed that Tb3+ doped silicate glasses mainly emit weak blue (400–460 nm) and strong green (480–570 nm) fluorescence. With the increase of Tb3+ ion concentration, the intensity of green emission increases, but that of blue emission decreases. Gd3+ ions can sensitize the luminescence of Tb3+ ions among silicate glasses. With the increase of CeO2 concentration, the luminescent intensity of Tb3+ doped silicate glasses at 550 nm quickly decreases. However, the irradiation resistance of Tb3+ doped silicate glasses can be effectively improved by CeO2 addition. The imaging quality of the luminescent glass screen is more excellent than that of Gd2O2S polycrystalline screens.  相似文献   

19.
Ultra violet-visible (UV-Vis) and Fourier transform infrared (FT-IR) spectra of Nd doped phosphate glasses have been studied before and after gamma irradiation in order to understand the changes in the optical properties of glasses as well as to find the characteristics frequencies of the vibrational modes of chemical bonds, which decide the structural and spectral changes. UV, Vis, IR absorption and photoluminescence spectra of these glasses show changes depending on the composition of glass matrix. These changes are correlated on the basis of oxygen (O) and neodymium (Nd) concentration ratio obtained from energy dispersive X-ray spectroscopic (EDX) measurement. Gamma irradiation shows decrease in transmission below 700 nm for all the Nd3+ absorption lines from all the samples. Differential absorption spectra (UV-vis) of the samples before and after gamma irradiation show generation of some new bands below 700 nm along with dips (decrease) in the spectrum at the location of main Nd3+ absorption lines. This is attributed to the generation of different types of defects in the glass matrix along with possibility of change in the valence state of Nd3+ to Nd2+. IR absorption spectra of these glasses are found dominated mainly by the characteristics phosphate groups and water (OH) present in the glass network. The effects of gamma irradiation on IR absorption are observed in the form of bond breaking and possible re-arrangement of bonding. EDX and X-ray photoelectron spectroscopic (XPS) measurements indicate decrease in the relative concentration of oxygen in the glass samples after γ-irradiation.  相似文献   

20.
《Journal of Non》2006,352(50-51):5296-5300
In this work, we present the synthetic route and the optical characterization of poly(styrene sulfonate) (PSS) films doped with Neodymium ions (Nd3+). In the synthesis optimization we obtained the maximum incorporation of Nd3+ in the matrix about 14.0%. The UV–Vis–NIR curve presents an intense characteristic electronic transition 4I9/2  4F5/2 + 2H9/2 at 800 nm. It was also shown the radiative transition 4F3/2  4I11/2 at about 1060 nm. Judd–Ofelt theory was used in order to obtain the near infrared Nd3+ radiative transition rate, emission cross-section and radiative lifetime.  相似文献   

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