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1.
Infrared and Raman spectra of oxyfluoroborate glasses of the compositions 20CaF2-20 ZnO-(60-x) B2O3-x Cr2O3 with 0 ≤ × ≤ 0.10 mol% (x = 0, 0.02, 0.04, 0.05, 0.06, 0.07, 0.08 and 0.1) have been analyzed in order to explain the role of Cr2O3 on the structure of these glasses. Density, molar volume, oxygen molar volume and oxygen packing density are determined to explain the packing of the atoms in the glasses. From these studies, the existence of different borate groups like di-, tri-, tetra-, penta-, ortho-, pyro- and metaborates in these glasses is established. With the increase in the concentration of Cr2O3 up to 0.06 mol%, conversion of BO3 units into BO4 units and above this mole fraction the reconversion of BO4 units into BO3 units is observed. The breaking and reforming of the boroxol ring is explained from the Raman spectral studies of these glasses.  相似文献   

2.
As part of ongoing studies to evaluate relationships between structure and rates of dissolution of silicate glasses in aqueous media, sodium borosilicate glasses of composition Na2O·xB2O3·(3 − x)SiO2, with x ≤ 1 (Na2O/B2O3 ratio ≥ 1), were analyzed using deep-UV Raman spectroscopy. Results were quantified in terms of the fraction of SiO4 tetrahedra with one non-bridging oxygen (Q3) and then correlated with Na2O and B2O3 content. The Q3 fraction was found to increase with increasing Na2O content, in agreement with studies on related glasses, and, as long as the value of x was not too high, this contributed to higher rates of dissolution in single pass flow-through testing. In contrast, dissolution rates were less strongly determined by the Q3 fraction when the value of x was near unity, and appeared to grow larger upon further reduction of the Q3 fraction. Results were interpreted to indicate the increasingly important role of network hydrolysis in the glass dissolution mechanism as the BO4 tetrahedron replaces the Q3 unit as the charge-compensating structure for Na+ ions. Finally, the use of deep-UV Raman spectroscopy was found to be advantageous in studying finely powdered glasses in cases where visible Raman spectroscopy suffered from weak Raman scattering and fluorescence interference.  相似文献   

3.
Hydrous barium disilicate glasses (BaSi2O5) containing 2.75 and 3.54 wt% dissolved water (corresponding to a molar concentration of hydrogen atoms of 11.1 and 14.2 mol/l, respectively) were synthesized by high temperature fusion in an internally heated gas pressure vessel. Near-infrared spectroscopy gives evidence that both OH groups and H2O molecules are present in the glasses. The maximum intensity in the range of OH stretching vibrations is at 2800 cm−1 indicating strong hydrogen bonding in the glasses. Electric conductivity measurements were carried out at temperatures up to 523 K without significant alteration of the sample. At higher temperatures, OH groups are converted to molecular H2O and water diffuses out of the sample resulting in a continuous decrease of the conductivity. An activation energy of 87 kJ/mol was derived for the dc conductivity in the unaltered glasses similar to the activation energy for bulk water diffusion in other silicate glasses. Because the dry barium disilicate glass is an electrical insulator at experimental conditions, we infer that the dc conductivity of the hydrous glasses is due to proton conduction.  相似文献   

4.
We studied the local structure and dynamics of dissolved water in hydrous aluminosilicate glasses with the compositions NaAlSi3O8·0.3H2O, NaAlSi3O8·1.3H2O and Ca0.5AlSi3O8·1.3H2O by using multinuclear NMR spectroscopy. Glasses were produced by melting glass powders with deuterium oxide under high pressure and the resulting 2H/(1H + 2H) ratio of the hydrous glasses was larger than 80%. NMR spectra reveal clear evidence for the presence of OH groups as well as of H2O molecules. The motion of these water species in the time range from some μs to some ms was studied by 1H NMR relaxation rates and the temperature dependence of the 2H NMR spectra. The motion is faster in the Ca-bearing glass than in the Na-bearing glass. The results are compared with those from quasi-elastic neutron scattering.  相似文献   

5.
Short-range and intermediate range structures of the sodium borate glass system were investigated using Raman spectroscopy to quantify their dependence on Na2O concentration. High-resolution spectra were collected by Raman spectroscopy using the Q-switched, second-harmonic pulse of a Nd:YAG laser as an excitation source. The system was designed for measurement of the spectra of glasses and melts up to temperatures over 1000 °C with high signal to noise ratio. Use of polarized light and the simultaneous analysis of HH and VH spectra allowed deconvolution of Raman spectra into appropriate bands with high reproducibility. The deconvoluted bands in the high-frequency region of 1100-1600 cm−1 could be assigned to the vibration modes due to the short-range structures of BO3 and BO2O units in the glasses. The band intensity ratios showed a simple linear relationship with the molar ratio, symmetric BO3 triangle unit, N3s, to asymmetric BO2O triangle unit, N3a, obtained from 11B-NMR results. These results allowed a quantitative measure for normalizing the spectra leading to a direct comparison of the band intensities. The ring-structures of intermediate range order, boroxol, pentaborate, tetraborate and diborate groups, could be quantified from the spectra in the middle-frequency region. Their trends with Na2O concentration showed a good consistency with 10B-NMR results and also Krogh-Moe’s model.  相似文献   

6.
Copper oxidation states, structure and properties of xCuO · (50-x)PbO · 50B2O3 glasses were investigated. Both infrared (IR) and 11B magic angle spinning nuclear magnetic resonance (MAS NMR) spectroscopies were employed to determine the tetrahedral BO4 fraction in the glasses as a function of CuO content. IR study indicates that the replacement of Pb2+ by Cu2+ ions increases the BO3 units by converting BO4- containing groups into ring type metaborate groups. The oxidation states of copper ions in the glasses have been studied using both X-ray photoelectron spectroscopy (XPS) and the wet chemical method. For high CuO containing (?30 mol%) glasses, high Cu+ ion concentrations (Cu+/Cutot.>0.3) result in a relatively slow disproportionation of B4-containing groups because of the small coordination number of Cu+ compared to Cu2+ ions. Effects of both glass structure and redox states of copper ions on glass properties including density, Vickers’ hardness, coefficient of thermal expansion, and chemical durability have been discussed.  相似文献   

7.
X-ray absorption spectroscopy (XAS) was used to characterize the tin (Sn) environments in four borosilicate glass nuclear waste formulations, two silicate float glasses, and three potassium aluminosilicate glasses. Sn K-edge XAS data of most glasses investigated indicate Sn4+O6 units with average Sn-O distances near 2.03 Å. XAS data for a float glass fabricated under reducing conditions show a mixture of Sn4+O6 and Sn2+O4 sites. XAS data for three glasses indicate Sn-Sn distances ranging from 3.43 to 3.53 Å, that suggest Sn4+O6 units linking with each other, while the 4.96 Å Sn-Sn distance for one waste glass suggests clustering of unlinked Sn4+O6 units.  相似文献   

8.
Bulk glasses of the series (1 ? x)[0.5K2O–0.1B2O3–0.4P2O5]–xNb2O5 with x = 0–45.7 mol% Nb2O5 were prepared by slow cooling in air and investigated by Raman, 31P, and 11B MAS NMR spectroscopy. The incorporation of Nb2O5 into the parent borophosphate glass results in a substantial increase in the glass transition temperature and chemical durability of glasses. Raman spectra showed that Nb atoms form distorted NbO6 octahedra, which are isolated at low Nb2O5 content, whereas at higher Nb2O5 content they form clusters. 11B NMR spectra of the glasses revealed the interaction between Nb2O5 and BO4 tetrahedral units, which results in a partial transformation of tetrahedral BO4 units to trigonal BO3 units and the formation of mixed B(OP)4?n(ONb)n units.  相似文献   

9.
This paper describes elastic properties and spectroscopic studies on the xPbO-50B2O3-(50 - x)V2O5 (where x = 20, 25, 30, 35, 40, 45 and 49 mol%) glass system. Elastic moduli and spectroscopic parameters exhibit compositional dependent trends and the existence of characteristic borovanadate groups in these glasses. The bulk modulus and shear modulus increase with the concentration of [BO4/2] and [B2V2O9]2− groups, which increases the dimensionality of the network. The scheme of modification of borate and vanadate groups has been explained by considering the Sanderson’s electronegativity principle. Analysis of infrared(IR) and magic angle spinning-nuclear magnetic resonance (MAS-NMR) spectra suggests the presence of characteristic diborovanadate groups also in these glasses. The results are examined in view of the structural groups formed due to the presence of PbO as a modifier.  相似文献   

10.
Two series of boroaluminosilicate glasses having varying mole ratios of B2O3/Na2O (series 1) and B2O3/SiO2 (series II) were prepared by conventional melt-quench method. Based on 29Si and 11B MAS NMR studies, it has been established that for series I glasses up to 15 mol% B2O3 content, Na2O preferentially interacts with B2O3 structural units resulting in the conversion of BO3 to BO4 structural units. Above 15 mol% B2O3 for series I glasses and for all the investigated compositions of the series II glasses, silicon structural units are unaffected whereas boron exist in both trigonal and tetrahedral configurations. Variation of microhardness values of these glasses as a function of composition has been explained based on the change in the relative concentration of BO4 and BO3 structural units. These glasses in the powder form can act as efficient room temperature ion exchangers for metal ions like Cu2+. It is seen that the ion exchange does not affect the boron and silicon structural units as revealed by IR studies.  相似文献   

11.
E. Mansour 《Journal of Non》2011,357(5):1364-3380
Fourier transformation infrared spectra, density and DC electrical conductivity of 30Li2O · xCeO2⋅(70 − x)B2O3 glasses, where x ranged between 0 and 15 mol%, have been investigated. The results suggested that CeO2 plays the role of network modifier up to 7.5 mol%. At higher concentrations it plays a dual role; where most of ceria plays the role of network former. The density was observed to increase with increasing CeO2 content. The effect on density of the oxides in the glasses investigated is in the succession: B2O3 < Li2O < CeO2. Most of CeO2 content was found to be associated with B2O3 network to convert BO3 into B O4 units. The contribution of Li+ ions in the conduction process is much more than that due to small polarons. The conductivity of the glasses is mostly controlled by the Li+ ions concentration rather than the activation energy for CeO2 > 5 mol%. Lower than 5 mol% CeO2 the conductivity is controlled by both factors. The dependence of W on BO4 content supports the idea of ionic conduction in these glasses.  相似文献   

12.
ZnO–B2O3–P2O5 glasses doped with MoO3 were investigated in the series (100?x)[0.5ZnO–0.1B2O3–0.4P2O5]–xMoO3, where bulk glasses were obtained by slow cooling in air within the compositional region of 0 ? x ? 60 mol% MoO3. The incorporation of MoO3 into the parent zinc borophosphate glass results in a weakening of bond strength in the structural network, which induces a decrease in chemical durability and glass transition temperature. Raman spectra reflect the incorporation of molybdate groups into the glass network of the studied glasses by the presence of the polarized vibrational band at ≈976 cm?1 ascribed to the MOx symmetric stretching vibrations and the depolarized band at ≈878 cm?1 ascribed to the Mo–O–Mo stretching vibration. The incorporation of molybdate units into the glass network results in the depolymerization of phosphate chains and the formation of P–O–Mo bonds, as reflected in Raman and 31P NMR spectra. According to the 11B MAS NMR spectra, tetrahedral B(OP)4?x(OMo)x units are formed in the glasses, whereas only a small amount of BO4 units is converted to BO3 units in the MoO3-rich glasses.  相似文献   

13.
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   

14.
The non-linear optical performance and structure of TeO2-Nb2O5-ZnO glasses was investigated as a function of ZnO content. The third-order non-linear optical susceptibility (χ(3)) as measured by a Degenerate Four Wave Mixing (DFWM) method, initially increased with increasing ZnO content to about 8.2 × 10−13 esu for a glass containing 2.5 wt% ZnO, and then decreased to 5.9 × 10−13 esu as the ZnO content increased to 10 wt%. There was no noticeable change as the ZnO content increased from 10 to 15 wt%. The non-linear optical response time, which caused electron cloud deformation, was from 450 to 500 fs. The structure of these glasses as analyzed by Raman spectroscopy and FT-IR spectra, was affected by the addition of ZnO up to 5 wt%, when, it is believed, the Zn2+ ions occupied the interstitial positions in the glass network by replacing the Nb5+ ions. The replaced Nb5+ ions occupied the network forming positions as the Te4+ ions. Increasing ZnO > 5 wt% did not have any further effect on the glass structure.  相似文献   

15.
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   

16.
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   

17.
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   

18.
Raman scattering spectra were recorded for pure boron oxide and sodium borate glasses and their melts at the temperature ranging from room temperature to 1200 °C to investigate the structural changes occurring in the melts. The amounts of short-range order structures (SRO), BO2O and BO3, were estimated from the high frequency bands at 1100-1600 cm−1. The ratio of 4-fold coordinated boron oxide BO4, N4, at high temperature could be derived for the glass melts as a function of Na2O concentration. In Na2O ?20 mol% region, N4 showed a slight decrease while the remarkable decrease of N4 was found in the region of Na2O ?25 mol% with increasing temperature. The enthalpy of the equilibrium reaction,
  相似文献   

19.
Anomalous physical properties (refractive index and density) of B2O3BaTiO3Na2O ternay glasses are determined and discussed on the basis of the structure present in the glasses and evidenced by vibrational Raman spectroscopy.These glasses behave in a manner analogous to the alkali B2O3X2O binary glasses for molar ratio R = basic oxide/B2O3 up to 0.3, with oxygen binding by means of bridging bonds while boron coordination changes from the trigonal to tetrahedral type. The phenomenon is indicated by a progressive weakening of the 806 cm?1 peak (attributable to a breathing vibration of the boroxol unit) and by a concomitant strengthening of the ~775 cm?1 peak (attributable to a vibrational mode of boroxol units, or derived units, containing at least one 4-coordinate boron atom). For higher R values the Raman spectra bring to light the progressive demolition of the structural units responsible for the 775 cm?1 Raman peak, which gives rise (the transformation is complete for R ~ 1) to two new main structural units, orthoborate [BTi4O10]?1 (peak at 845 cm?1) and metaborate BO2? (peak at 715 cm?1).  相似文献   

20.
This work studied the properties of glasses with the molar composition 63.8SiO2-(11.6-x)Na2O-(0.7 + x)B2O3-19.2CaO-3MgO-1.5Al2O3-0.2P2O5, in which x = 0, 1, 2, 3. These glasses are of interest for the development of slowly dissolving fibers to be incorporated in composites for medical applications. The thermal properties were recorded using hot stage microscopy, differential thermal analysis, and heat treatments in the range of 800°-1000 °C. The glass crystallization behavior was determined based on calculated values of the activation energy of crystallization and the Johnson-Mehl-Avrami exponent. The structural units in the glass network were identified using infrared spectroscopy. Finally, in vitro dissolution was tested in SBF solution.The addition of B2O3 increased the glass transition temperature and reduced the working temperature. When heat treated at 900 °C, the glass with the smallest amount of B2O3 formed two crystalline phases: magnesium silicate MgSiO3 and wollastonite CaSiO3. In the other compositions, only CaSiO3 was observed after heat treatment at 950 °C. All the glasses crystallized preferentially from the surface. Changes in the liquidus and crystallization temperatures were related to changes in the glass structure. The formation of [BO3] units led to glasses with improved resistance to crystallization and decreased liquidus temperature. In the glasses with 2.7 and 3.7 mol% B2O3, [BO3] units were transformed into [BO4] units. The formation of [BO4] led to an increase in fragility and a decrease in resistance to crystallization. All the glasses dissolved slowly in simulated body fluid.  相似文献   

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