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1.
Lead-bismuthate glasses containing rare earth ions in the xR2O3(1 − x)[3Bi2O3⋅ PbO] (R = Nd, Eu, Er and Gd), xCeO2(1 − x)[3Bi2O3⋅ PbO] and xTb4O7(1 − x)[3Bi2O3⋅ PbO] vitreous systems with x up to 0.25 were prepared and investigated by density, IR spectroscopy and magnetic susceptibility measurements. Density data show that the gradual addition of the rare earth ions leads not only to a simple incorporation of the rare earth ions in the host glass matrix but also generates structural changes of the vitreous matrix. FTIR data permitted to determine the Bi3+/Bi6+ ratio of the samples and to follow the compositional evolution of the structural changes for the studied systems. Magnetic susceptibility data show that the magnetic rare earth ions appear as isolated species for low rare earth oxide contents (x ≤ 0.03 ÷ 0.05) and as both isolated and magnetically coupled species for higher contents. All the magnetic rare earth ions present a very accentuated clustering tendency. Some of the studied rare earth ions appear in the host glass matrix in a single valence state (neodymium, gadolinium, and erbium), namely the 3+ one. Other rare earth ions appear in two valence states (i.e., cerium, europium and terbium), but the 3+ one is the most stable.  相似文献   

2.
P. Srinivasa Rao 《Journal of Non》2011,357(21):3585-3591
The variation in physical, structural and electrical properties has been studied as a function of Bi2O3 content in 20ZnF2-(10 + x) Bi2O3-(70-x) P2O5, 0 ≤ x ≤ 10 mol% glasses, which were prepared by melt quenching technique and characterized by differential thermal analysis (DTA). Colorless samples, which have no absorption peaks, are obtained for 10 and 12 mol% of Bi2O3 and the glasses are slowly becoming brownish from 15 to 20 mol% of Bi2O3 which exhibit two absorption peaks at ~ 370 nm, ~ 450 nm correspond to Bi° transitions 4S3/2 → 2P3/2 and 4S3/2 → 2P1/2 respectively. The decrease in 3P1 → 1S0 transition of Bi3+ photo luminescence emission for 18 and 20 mol% of Bi2O3 and increase in optical absorption area shows the reduction of Bi3+ to Bi°. From FTIR studies it is observed that an addition of Bi2O3 decreases the P―O―P covalent bond by forming P―O―Bi bonds due to high polarizing nature of Bi3+ ions. Dielectric parameters like ε', tan δ and a.c. conductivity σac are found to increase and activation energy for a.c. conduction is found to decrease with the increase in the concentration of Bi2O3. Density of defect energy states is found to increase for higher concentration of Bi2O3 and is discussed according to quantum mechanical tunneling (QMT) model.  相似文献   

3.
Glasses of the system: xBi2O3-(100−x)B2O3 (x = 20 to 66 mol%) were prepared and characterized by density, DSC, UV-visible absorption and 11B MAS-NMR spectroscopy. Glass molar volume increases while the glass transition temperature decreases with Bi2O3 concentration. Densities of some bismuth borate glasses are found to be greater or very close to those of single crystal phases with equal composition. B11 MAS-NMR studies determined that the fraction of tetrahedrally coordinated borons (N4) is maximum at 42 mol% of Bi2O3 and that there is a local maxima in N4 at Bi2O3 concentration of 50 mol%. Glasses containing Bi2O3 concentration of 33 mol% and higher show an unusual, intense absorption band just below the optical band gap. Two crystalline phases: Bi3B5O12 and Bi4B2O9 were prepared by devitrification of glasses and characterized by X-ray diffraction, FTIR and 11B MAS-NMR studies. Both crystalline phases contained significantly lower N4 than glasses with equal composition.  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.
Tomoharu Hasegawa 《Journal of Non》2011,357(15):2857-4499
Glasses of the Bi2O3-TeO2-B2O3 ternary system were developed and their linear and nonlinear optical properties were investigated. The absorption edges of these glasses were found to be 367-384 nm with a good transmittance in visible wavelength, although they exhibit the refractive indices as high as 1.98-2.12 at 633 nm. The absorption edges are quite steep and they are analyzed by the Urbach theory. The obtained Urbach energies of these glasses are 73-79 meV which are comparable to silica glasses. The high refractive index and its glass composition dependency are discussed according to the basics of the electronic polarizability and optical basicity. The high third order nonlinear susceptibility χ(3) = 2.0 × 10− 12 esu at 800 nm was also obtained in the 36Bi2O3-18TeO2-46B2O3 glass.  相似文献   

6.
H. Doweidar 《Journal of Non》2009,355(6):348-354
Studies on xRO · 30Bi2O3 · (70−x)B2O3 glasses have been carried out (0 ? x ? 30 mol%, R = Zn, Ba). Elastic properties and Debye temperature have been investigated using sound velocity measurements at 4 MHz. The ultrasonic parameters along with the IR spectroscopic studies have been employed to explore the role of divalent cations in the structure of the studied glasses. Analysis of infrared spectra indicates that RO is preferentially incorporated into the borate network, forming BO4 units. It is assumed that Bi2O3 enters the structure in the form of BiO6 only. The change of density and molar volume with RO content reveals that BO4 units linked to R2+ cations are denser than those linked to positive sites in the Bi2O3 network. Predicted values of four co-ordinated boron put forward questions about the reliability of assignment of structural units that Bi2O3 may form.  相似文献   

7.
The effects of the substitution of fluoride ions for oxide ions on the thermal and optical properties of ternary ZnO-Bi2O3-P2O5 glass with low-P2O5 content (20-25 mol%) were investigated. Fluoride ions were introduced into the glass up to about 12 mol% as ZnF2. Raman spectra indicated that fluoride ions were substituted for oxide ions connected with bismuth ions. Deformation and glass transition temperatures decreased monotonically with fluorine concentration. The absorption edge shifted toward higher energies with increasing fluorine concentration by about 0.3 eV for 12 mol% ZnF2 substitution. The blue shift of the absorption edge is attributable to two effects. One was a blue shift of an absorption band which was observed as a peak at 4.7 eV in the reflection spectra and was attributed to the spin forbidden 6s-6p interband transition in Bi3+ ions. The blue shift originates from a change in electron-donating ability through anions as expected from electronegativity or optical basicity. Another is a disappearance of a shoulder at around 4.3 eV in the reflection spectra. The latter was the major reason for the large blue shift of the absorption edge energy, because the band relating to the 4.3 eV shoulder is close to the absorption edge.  相似文献   

8.
O. Sanz  J. Gonzalo 《Journal of Non》2006,352(8):761-768
Glasses of the systems Bi2O3-SiO2, Bi2O3-PbO-Ga2O3, Bi2O3-PbO-Ga2O3-GeO2 and Bi2O3-GeO2-Li2O have been prepared and the interaction of their melts with crucibles of different materials has been analytically determined. Silica and porcelain crucibles were very strongly corroded and the glass composition was noticeably altered. Instead platinum crucibles are not affected if the Bi2O3 content is not too high. The color of the glasses changes in all cases from pale yellow to deep brown when the melting temperature reaches approximately 1000 °C. The higher the temperature and the Bi2O3 content the darker the brown color, independently of the nature of the employed crucible. The addition of oxidizing ions (Sb5+, As5+ or Ce4+) to the glass batch prevents darkening. Nanoparticles of elementary bismuth Bi0 are observed by transmission electron microscopy in the glasses melted above 1000 °C. The partial thermoreduction of the Bi2O3 during the heating of the glass melt is proposed as the mechanism responsible for the observed darkening.  相似文献   

9.
Effects of boron addition on the glass forming characteristics, structure and properties of iron phosphate glasses with nominal compositions of xB2O3-(40−x)Fe2O3-60P2O5 (x = 2-20, mol%) and xB2O3-(100−x)[Fe2O3-60P2O5] (x = 2-20, mol%) have been investigated by DTA, XRD, IR and Mössbauer spectroscopy. Although there were some weak local surface crystallizations on especially most of the glasses in group B, all of the compositions formed glass. DTA spectra showed two exothermic peaks corresponding to crystallizations along with an endothermic glass transition peak. Tg increased with increasing B2O3 content for the glasses in the first series which indicates that the addition of B2O3 increases the thermal stability of glasses in this series while the opposite is observed in the second series. The dissolution rates of boron containing bulk glasses were found to be around 10−9 gr/cm2 min which are comparable to that of the base iron phosphate glass. When the B2O3 content was above 14%, new bands related to BO4 tetrahedral groups have been observed in the IR spectra. The Mössbauer isomer shift values of boron doped glasses were found to be a little lower than that of base glass but both iron ions had distorted octahedral coordination in all glasses. The fraction of Fe2+ ions in glasses (Fe2+/∑(Fe2+ + Fe3+)) was found to be 23% for the base glass while it was 10-22% for the boron doped glasses.  相似文献   

10.
Glasses of the xNd2O3(1−x)(3Bi2O3 · PbO) system with 0?x?0.30 were obtained and studied by IR spectroscopy, X-ray photoelectron spectroscopy (XPS), density and magnetic susceptibility measurements. IR and density measurements show that the addition of neodymium ions produces structural changes and the neodymium ions play a network modifier role in the host glass matrix. XPS investigation permitted following the evolution of the structural disorder, of the degree of polymerization of bismuthate chains and of the fraction of bridging oxygens with respect to the neodymium ion concentration of the studied glasses. Magnetic susceptibility data show that the Nd3+ ions are present as isolated species for x?0.05 and as both isolated and exchange coupled species for higher x values.  相似文献   

11.
Glasses in the ternary system PbO-MoO3-P2O5 were prepared in three compositional series (100 − x)[0.5PbO-0.5P2O5]-xMoO3 (A), 50PbO-yMoO3-(50 − y)P2O5 (B) and (50 − z)PbO-xMoO3-50P2O5 (C) and their structure was studied by Raman and 31P NMR spectroscopies. In the compositional series (100 − x)[0.5PbO-0.5P2O5]-xMoO3 homogeneous glasses were prepared in the concentration region of 0-70 mol% MoO3. Their glass transition temperature increases with increasing MoO3 content having a maximum at x = 50 mol% MoO3. 31P MAS NMR spectra reveal that in the glass series (A) the incorporation of MoO3 results in the shortening of phosphate chains and gradual transformation Q2 units into Q2 and Q0 units, prevailing in glasses with a high MoO3 content. Octahedral structural units MoO6 dominate in most glass compositions and they are present also in the structure of Pb(MoO2)2(PO4)2 compound corresponding to the glass composition 50Pb(PO3)2-50MoO3. The analysis of Raman spectra of glasses of the (B) series with a high MoO3 content showed the transformation of octahedral MoO6 units into tetrahedral MoO4 units.  相似文献   

12.
This study was explored in series of the optical, thermal, and structure properties based on 60P2O5-10Al2O3-30ZnO (PAZ) glasses system that doped with varied rare-earth (RE) elements Yb2O3/Er2O3. The glass transition temperature, softening temperature and chemical durability were increased with RE-doping concentrations increasing, whereas thermal expansion coefficient was decreased. In the optical properties, the absorption and emission intensities also increase with RE-doping concentrations increasing, When Er2O3 and Yb2O3 concentrations are over than 3 mol% in the Er3+-doped PAZ system and Yb3+-doped concentration is over than 3 mol% for Er3+/Yb3+-codoped PAZ system, the emission intensity significantly decreases presumably due to concentration quenching, formation of the ions clustering, and OH groups in the glasses network. It is suggested that the maximum emission cross-section (σe) is 7.64 × 10− 21 cm2 at 1535 nm is observed for 3 mol% Er3+-doped PAZ glasses. Moreover, the maximum σe × full-width-at-half-maximum is 327.8 for 5 mol% Er3+-doped PAZ glasses.  相似文献   

13.
The purpose of this paper is to study the glass formation tendency in the ternary system B2O3―Bi2O3―MoO3 and to define the main structural units building the amorphous network. A wide glass formation area was determined which is situated near the Bi2O3―B2O3 side. A liquid phase separation region was observed near the MoO3―B2O3 side for compositions containing below 25 mol% Bi2O3 and their microheterogeneous structure was observed by SEM. The phase formation was characterized by X-ray diffraction (XRD). By DTA was established the glass transition temperature (Tg) in the range of 380-420 °C and crystallization temperature (Tx) vary between 420 and 540 °C. The main building units forming the amorphous network are BO3 (1270 and 1200 cm− 1), BO4 (930-880, 1050-1040 cm− 1), MoO4 (840-760 cm− 1) and BiO6 (470 cm− 1). It was proved that Bi2O3 favors the BO3 → BO4 transformations while MoO3 preserves BO3 units in the amorphous network.  相似文献   

14.
Glasses in the ternary ZnO-P2O5-TeO2 system were prepared and studied in two compositional series (100 − x)[0.5ZnO-0.5P2O5]-xTeO2 (X-series) and 50ZnO-(50 − y)P2O5-yTeO2 (Y-series) within the concentration range of x = 0-60 and y = 0-40 mol% TeO2. Their structure was studied by Raman and 31P MAS NMR spectroscopies. The incorporation of TeOx units into the structural network is associated with the depolymerisation of phosphate chain structure as revealed by both methods. At a high TeO2 content isolated PO4 tetrahedra are formed in the structure of glass series Y, while diphosphate O3P-O-PO3 groups are present in the structure of the glass series X. In the structure of glass series Y tellurium atoms form predominantly TeO3 trigonal pyramids, whereas in the X glass series TeO4 trigonal bipyramids prevail in the glass structure. The addition of TeO2 to the parent zinc metaphosphate glass results in a decrease of glass transition temperature in both compositional series associated with the replacement of stronger P―O bonds by weaker Te―O bonds.  相似文献   

15.
The glass formation region in the ternary ZnO―Bi2O3―WO3 system is determined by melt quenching technique (cooling rates 101-102 K/s). New original glasses are obtained in a narrow concentration range with high WO3 content (60-75 mol%). Homogeneous glasses of the composition (100 − x)[0.2ZnO·0.3Bi2O3·0.5WO3]xMoO3, were obtained between 20 and 60 mol% MoO3. Characterization of the amorphous samples was made by x-ray diffraction (XRD), differential thermal analysis (DTA) and infrared spectroscopy (IR). The thermal stability of glasses decreases with the increasing of MoO3 content. The glass transition temperature, Tg, varies between 340-480 °C, while the crystallization temperature, Tx, varies between 388-531 °C. The tungstate glasses possess higher crystallization temperature (Tx over 500 °C) in comparison with the other vanadate and molybdate non-traditional glasses. The glass network is realized by transformation of three-dimensional structure of WO3 into a layered one, consisting mainly of WO6 units. We supposed that the network of quaternary glasses is built up by MoO4, MoO6 and WO6. At low concentration ZnO and Bi2O3 facilitate the disorder in the supercooled melts, while at high concentration stimulate crystallization processes. These oxides belong to the intermediate ones.  相似文献   

16.
Glasses of the 25Ln2O3-25B2O3-50GeO2 composition (mol%) where Ln = (1 − x − y) La, xEr, yYb, with an addition of Al2O3 have been obtained and their luminescent characteristics examined. Probabilities of spontaneous emission, peak sections of the induced radiation and quantum yields of luminescence corresponding to the 2F5/2 → 2F7/2 transition of Yb3+ ions and the 4I13/2 → 4I15/2 transition of Er3+ ions have been defined. Quantum yield of Yb3+ luminescence for glasses with low Yb2O3 concentration reaches values closed to 100%. The luminescence spectrum of Er3+ ions exhibits a broad peak at about 1530 nm with effective width more than 80 nm when excited by irradiation at λ = 977 nm. Spontaneous emission probability and peak stimulated radiation section for Er3+ luminescence band 4I13/2 → 4I15/2 were determined to be equal to 175 s−1 and 4.9 × 10−21 cm2 respectively. Effective quenching of both rare-earth activators by oscillations with ν ≈ 2630 and 2270 cm−1 was found. These oscillators, most likely, represent OH-groups connected by a hydrogen bond with non-bridging oxygen atoms in the borogermanate matrix.  相似文献   

17.
Transparent glasses of composition 10BaO.20Bi2O3.(70 ? x)B2O3.xFe2O3 (wt.%) where 0  x  2.0, were characterized by XRD and SEM. Physical, spectroscopic and dielectric properties were investigated. At higher dopant of Fe2O3, EPR results revealed that, the number of Fe3+ ions participate in the resonance is decreased by forming a new signal at g  3.015 due to increase of antiferromagnetic interaction of Fe3+ ions and/or formation of low spin Fe3+ ions in the glass matrix. With initial 0.5 wt.% doping of Fe2O3, less dense glass is formed with colloids of metallic Bi0 atoms. The absorption bands at 604 and 712 nm in F5 glass are ascribed to Bi0 and Bi+ radicals respectively. No characteristic Fe3+ absorption bands (spin-forbidden) are found. Fe2+ ions are increased at higher concentration of Fe2O3. Higher concentration of Fe2O3 is favorable for BO2O?, BO3, BiO6 and FeO6 symmetry unit leads to low band gap and high Urbach energy. By doping of Fe2O3 the dielectric parameters like dielectric constant (ε′), loss (tanδ and ac electrical conductivity (σac) are found to increase.  相似文献   

18.
Er2O3-doped Bi2O3-B2O3-Ga2O3 glasses were prepared by the conventional melt-quenching method, and the Er3+:4I13/2 → 4I15/2 fluorescence properties are studied for different Er3+ concentrations. when the Er2O3 concentration increases from 0.03 to 3.0 mol%, the measured lifetime of Er3+:4I13/2 level decrease from 2.24 to 0.9 m s, and from 0.25 to 0.20 m s for the Er3+:4I11/2 level. The fast energy migration among Er3+ ions cause the reduction of lifetime of the 4I13/2 level, whereas the change in the 4I11/2 level is mainly due to a cooperative upconversion process (4I11/24I11/2) → (4F7/24I15/2). Based on the dipole-dipole interaction theory, the interaction parameter, CEr,Er, for the migration rate of Er3+:4I13/2 ↔ 4I13/2 was calculated to be 32 × 10−40 cm6 s−1.  相似文献   

19.
Room temperature electron spin resonance (ESR) spectra and temperature dependent magnetic susceptibility measurements have been performed to investigate the effect of iron ions in 41CaO · (52 − x)SiO2 · 4P2O5 · xFe2O3 · 3Na2O (2 ? x ? 10 mol%) glasses. The ESR spectra of the glass exhibited the absorptions centered at g ≈ 2.1 and g ≈ 4.3. The variation of the intensity and linewidth of these absorption lines with composition has been interpreted in terms of variation in the concentration of the Fe2+ and Fe3+ in the glass and the interaction between the iron ions. The magnetic susceptibility data were used to obtain information on the relative concentration and interaction between the iron ions in the glass.  相似文献   

20.
Iron redox equilibrium, structure and properties were investigated for the 10ZnO-30Fe2O3-60P2O5 (mol%) glasses melted at different temperatures. The structure and valence states of the iron ions in these glasses were investigated using Mössbauer spectroscopy, Raman spectroscopy and differential thermal analysis. Mössbauer spectroscopy indicated that the concentration of Fe2+ ions increased in the 10ZnO-30Fe2O3-60P2O5 (mol%) glass with increasing melting temperature. The Fe2+/(Fe2+ + Fe3+) ratio increased from 0.18 to 0.38 as the melting temperature increased from 1100 to 1300 °C. The measured isomer shifts showed that both Fe2+ and Fe3+ ions are in octahedral coordination. It was shown that the dc conductivity strongly depended on Fe2+/(Fe2+ + Fe3+) ratio in glasses. The dc conductivity increases with the increasing Fe2+ ion content in these glasses. The conductivity arises from the polaron hopping between Fe2+ and Fe3+ ions which suggests that the conduction is electronic in nature in zinc iron phosphate glasses.  相似文献   

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