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1.
Diffusion coefficients of iron were measured in glass melts with the basic compositions 5Na2O · xMgO · (15−x)CaO · yAl2O3 · (80−y)SiO2 with x=5, 10 and y=0, 5, 7.5, 10 and 15. The melts were doped with 0.25 mol% Fe2O3 and studied in the temperature range from 1000 to 1600 °C using square-wave voltammetry. The voltammograms exhibited distinct peaks attributed to the reduction of Fe3+ to Fe2+, from which peak currents mixed diffusion coefficients of iron were calculated. Diffusion coefficients in all melt compositions which did not show crystallization could be fitted to Arrhenius equation. The diffusivities measured in different melt compositions were related to the same viscosity, i.e. not the same temperature. Increasing the alumina concentration from 5 to 10 mol% resulted in an increase of the viscosity corrected diffusivities. At further increasing alumina concentrations, the diffusivities get smaller again. This can be explained by the stabilizing effect of Na+ and Ca2+ on FeO4 and AlO4-tetrahedra, which strengthens the incorporation of Fe3+ into the glass structure.  相似文献   

2.
Experimental results of studying the metastable liquid–liquid phase separation and homogenization induced by ion exchange in (15-x)Li2O · xNa2O · 35B2O3 · 50SiO2 glass-forming system are presented. Both a homogeneous under-surface layer in a phase-separated glass and a phase-separated under-surface layer in a homogeneous glass have been formed by an ion exchange technique. The Li-for-Na ion exchange in the glass with x=15 led to phase-separated layers while the Na-for-Li ion exchange in the phase-separated glass with x=5 led to the homogeneous vitreous layers. These effects and the conditions that produce them are discussed from the viewpoint of phase equilibria in the system involved.  相似文献   

3.
J.W Park  Haydn Chen 《Journal of Non》1980,40(1-3):515-525
The infrared absorption spectra of sodium-disilicate glasses containing various amounts of Fe2O3 ([Na2O · 2 SiO2]1−x [Fe2O3]x, where X = 0.05, 0.1 and 0.2) were investigated in the wavenumber range from 200–2000 cm−1. The addition of Fe2O3 to the sodium-disilicate glass does not seem to introduce any new absorption band as compared with the spectrum of a pure sodium-disilicate glass; nevertheless, a general shift of the existing absorption bands toward lower wavenumbers is observed. The amount of shift is, in fact, proportional to the content of Fe2O3 in the glass. This observation is consistent with the recently proposed structural model for the bonding of Fe3+ ions in the iron-sodium-silicate glass system.

Annealing of 20 mol% iron oxide glasses at 550 and 580°C produced an extra sharp infrared absorption peak at about 610 cm−1 wavenumber. This new peak is believed to be related to the crystallized particles of the glass as concluded from both a scanning electron micrograph and an electron diffraction pattern.  相似文献   


4.
The electrical conductivities of (1−x) Li2O · x BaO · 2 SiO2, (1−x) Na2O · x MgO ·2 SiO2, (1−x) Na2O · x CaO · SiO2 and (1−x) Na2O · x BaO · 2SiO2 glasses were measured at temperature ranging from room temperature to 450°C. The transport numbers for Na+ ion in (1−x) Na2O · x BaO · 2 SiO2 glasses were measured. It was found that the alkali ion carried a significant part of the current in these glasses except one that had no alkali ions, and the conductivity decreased markedly as the alkali oxide was substituted by an alkaline earth oxide. The results of conductivity measurements combined with the data hitherto reported on mixed alkali glasses led to the proposal that the so-called mixed alkali effect could be explained on the basis of the independent path model in which it is assumed that cations can move only through vacant sites left by those of the same type.  相似文献   

5.
The 11B, 27Al, 29Si and 31P magic angle spinning (MAS) NMR spectra of MO–P2O5, MO–SiO2–P2O5 and MO(M2O)–SiO2–Al2O3–B2O3 (M=Mg, Ca, Sr and Ba, M=Na) glasses were examined. In binary MO–P2O5 (M=Ca and Mg) glasses, the distributions of the phosphate sites, P(Qn), can be expressed by a theoretical prediction that P2O5 reacts quantitatively with MO. In the ternary 0.30MO–0.05SiO2–0.65P2O5 glasses, the 6-coordinated silicon sites were detected, whose population increases in the order of MgOxCaO–0.05SiO2–(0.95−x)P2O5 glasses, its population increases with an increase in f (=([P2O5]−[MO]−[B2O3]−[Na2O])/[SiO2]) and has maximum at f=9. The signal due to the 5-coordinated silicon atoms is also observed when x is smaller than 0.45. When three network-forming oxides such as SiO2, Al2O3 and B2O3 coexist, Al2O3 reacts preferably with MO. The populations of 4-coordinated boron atoms, N4, are expressed well with r/(1−r), where r=([Na2O]−[Al2O3])/([Na2O]−[Al2O3]+[B2O3]). The correlation of the Raman signal at 1210 and 1350 cm−1 with the NMR signal of Si(Q6) at −215 ppm is also seen.  相似文献   

6.
Thermally stimulated luminescence (TSL) and infrared (IR) spectroscopy were measured in plasma grown Si1−xGexO2 (x=0, 0.08, 0.15, 0.25, 0.5) with different thicknesses (12–40 nm). A comparison with the TSL properties of thermally grown SiO2 and GeO2 was also performed. A main IR absorption structure was detected, due to the superposition of the peaks related to the asymmetric O stretching modes of (i) Si–O–Si (at ≈1060 cm−1) and (ii) Si–O–Ge (at 1001 cm−1). Another peak at ≈860 cm−1 was observed only for Ge concentrations, x>0.15, corresponding to the asymmetric O stretching mode in Ge–O–Ge bonds. A TSL peak was observed at 70°C, and a smaller structure at around 200°C. The 70°C peak was more intense in all Ge rich layers than in plasma grown SiO2. Based on the thickness dependence of the signal intensity we propose that at Ge concentrations 0.25x0.5 TSL active defects are localised at interfacial regions (oxide/semiconductor, Ge poor/Ge rich internal interface, oxide external surface/atmosphere). Based on similarities between TSL glow curves in plasma grown Si1−xGexO2, thermally grown GeO2 and SiO2 we propose that oxygen vacancy related defects are trapping states in Si1−xGexO2 and GeO2.  相似文献   

7.
The La L1 and L3 XANES and L3 EXAFS have been investigated for the series of glasses 10K2O---50SiO2---x La2O3 (x = 1, 5, 10) and (10 − x)K2O---40SiO2−(x/3)La2O3 (x = 7.5, 5, 2.5) and model compounds La2O3, LaAlO3, LaPO4, La2NiO4, La2CuO4 and La(OH)3. An edge resonance at 25 eV above the L1 edge in the glass spectra is concentration-dependent, decreasing in intensity with increasing lanthanum concentration. The 2s → nd forbidden transition increases with La2O3 concentration, indicating a reduction in the ‘average’ site symmetry of the first coordination shell of La. Mapping X(k) space, which is a new and promising technique, was employed to extract bond distance, coordination number and thermal parameters from the EXAFS. By this method, one calculates the complete X(k) space a function of all physically reasonable values of the adjusted parameters in all possible combinations. The advantage in this method is the assurance of a global minimum. Bond lengths were comparable to those obtained by Fourier transforming the phase corrected EXAFS. The values are 2.42 Å (± 0.03 Å) for La---O. The coordination numbers (N ≤ 7 ± 1.5) were derived by mapping and comparison to the published structures for other La compounds. X(k) mapping is compared with least-squares fitting the data, and the correlation between the Debye-Waller factor and coordination number is also discussed.  相似文献   

8.
E Prasad  M Sayer  H.M Vyas 《Journal of Non》1980,40(1-3):119-134
Glasses of composition 65 mol% LiNbO3:: 35 mol% SiO2 have been shown to be Li+ ion conductors with a conductivity at 200°C > 1 × 10−5 (η cm)−1 and an activation energy of 0.54 eV. The addition of approximately 0.1 mol% Fe2O3 leads to an enhancement of conductivity to ≈10−3 (η cm)−1 at 200°C and an activation energy of 0.67 eV. The effect of Fe is shown to be in the control of microstructure in the glass, with Fe2O3 concentrations < 1 mol% acting as a grain growth inhibitors and larger concentrations acting as a nucleating agents. A model for this process based on the expected stoichiometry of the melt and the effect of Fe2+ and Fe3+ in charge compensation is in excellent agreement with experimental data from electron spin resonance.  相似文献   

9.
The crossover from a frequency independent to a frequency dependent ac response has been studied in glasses with the composition 37.2Na2O-12.8CaO5 · 50P2O5 and 30Na2O-5CaO-7.5Al2O3-57.5P2O5 (mol%) containing 5 × 10−3 ≤ mol% Ag2O ≤ 5 × 10−1. Recently, we have established that in these glasses the diffusion coefficient of guest silver ions varies in space. In this case, as a first approximation, the diffusion coefficient may be considered as a constant within regions whose size is no less than 10 nm across. We assume that the diffusion of sodium ions can be given by the D(r) coefficient with the same spatial dispersion as that of silver ions. It is demonstrated that the frequency dependence of ac response is in fair agreement with the assumption.  相似文献   

10.
The linewidth-broadening of the EPR spectra of Cu2+ in silicate, borate and phosphate glasses was analyzed in terms of the distribution of g| and A|| and δA|) and related to the distribution of the rigidity of the network structure. X- and K-band spectra were measured for the glasses doped with 63Cu2+ (93% abundance). The linewidth of the HFS shoulders with parallel orientation to H increased linearly with increasing m or microwave frequency. δg| and δA| showed a marked dependence on glass composition. For example, in Na2O---B2O3 glasses, on going from x (mol% of Na2O) being small through intermediate to large, δg| varied from small through large to negligibly small. In contrast to these glasses δg| was extremely large for 75PbO · 25B2O3 glass. The large δg| for the Na2O---B2O3 glassesof intermediate x was attributed to the coexistence of various borate groups competitively coordinating to Cu2+. Negligibly small δg| for 70Na2O · 30B2O3 glass and extremely large δg| for 75PbO ·25B2O3 glass, both with a narrower structural distribution, reflect regidity of the glass network. The Pb---O bonding is strong enough to distort the coordination of Cu2+-complex. The situation is the reverse in Na2O---B2O3 glasses.  相似文献   

11.
The properties and structure of (45 - x)RO · xNa2O · 2.5Al2O3 · 52.5P2O5 (R = Mg, Ca, Sr, Ba, 0 x 31 mol%) glasses were investigated. The variation in the molar volumes of glasses in the MgO series is closely related to the formation of the end groups in the glasses with the substitution of Na+ ions for Mg2+ ions, resulting in a variation of the density and refractive index of the glasses. The properties of glasses containing CaO in terms of Na2O substitution depend mainly on the low field strength of Na+ ions substituting for CaO even though the end groups occurring in the glasses increased. The variation in properties of the glasses containing SrO and BaO, some of which were substituted by Na2O, could be explained by differences in masses, field strength and polarizability between the Na+ ions and the alkaline-earth ions due to a small variation in the structure of the glasses despite Na2O substitution.  相似文献   

12.
11B (I=3/2) MAS NMR in the binary glass system xV2O5–B2O3 (x=0.053, 0.43) and the ternary glass system xV2O5–B2O3–PbO (0.1x1.5) has been investigated at room temperature. In the xV2O5–B2O3 glasses, one NMR line due to BO3 unit was observed. Meanwhile in the xV2O5–B2O3–PbO, two NMR lines which arise from BO3 and BO4 units were detected, where the appearance of BO4 units is produced by the presence of PbO. From the computer-simulation of the 11B NMR central transition line (m=−1/2↔1/2), the quadrupole parameters (e2qQ/h and η) for BO3 units in xV2O5–B2O3, and those for BO3 and BO4 units in xV2O5–B2O3–PbO were obtained as a function of x. As the V2O5 content increases in xV2O5–B2O3–PbO, the e2qQ/h and η values of the BO3 associated resonance are found to slightly decrease and increase, respectively. Meanwhile, the e2qQ/h and η values of BO4 associated resonance in xV2O5–B2O3–PbO are found to slightly increase and decrease, respectively. By comparing the intensities of the total transitions (m=−3/2↔−1/2,m=−1/2↔1/2, and 1/2↔3/2) for the 11B NMR line of BO3 and BO4 units contained in xV2O5–B2O3–PbO with those of respective standard samples of 0.053V2O5–B2O3 and NaBH4, the quantitative fractions of BO3 and BO4 in xV2O5–B2O3–PbO were obtained as a function of x.  相似文献   

13.
The internal friction of xNa2O·(0.5−x)V2O5·O.5P2O5(x = 0.025–0.3) glasses was studied using the low-frequency torsion pendulum technique. The temperature spectrum of internal friction reveals three maxima. Maximum 1, the so-called “electron” maximum, is the same as observed in binary vanadium-phosphate glasses. The origin of maximum 2 can be attributed to ion migration. Maximum 3 appears for glasses containing more than 10 mol.% Na2O and is probably connected with sodium-proton interactions.  相似文献   

14.
Electron paramagnetic resonance (EPR) spectra of lithium borate glass (1 - x)(0.63B2O3 · 0.37Li2O) · xFe2O3, with x varying from 0.001 to 0.1, were measured at different microwave frequencies and temperatures. For low Fe3+ concentrations (Fe2O3 molar contents from 0.001 to 0.01), X-band EPR spectra, consisting of a gef = 4.3 peak accompanied by a shoulder continuing down to gef = 9.7, are computer simulated on the basis of a ‘rhombic’ spin-Hamiltonian with Zeeman and fine-structure terms. A good fit to the experimental spectra for various Fe2O3 contents is observed with the same values of the spin-Hamiltonian parameters and assuming a Lorentzian lineshape and a linewidth increasing linealry with the concentration of Fe3+ ions. It is concluded that the spectrum is due to diluted Fe3+ ions in a relatively strong crystal field of orthorhombic symmetry, with largely distributed fine-structure parameters. From the concentration dependence of the line width, by extending to glasses a theoretical EPR linewidth expression derived for polycrystalline systems, the minimum distance between diluted Fe3+ ions is estimated as 4.9 Å. A diluted state of Fe3+ ions in the glass network in this range is also confirmed by the temperature dependence of the gef = 4.3 resonance which follows a Curie law. For intermediate concentrations of Fe3+ ions (Fe2O3 molar contents from 0.01 to 0.1), the width of the gef = 4.3 line is proportional to the square root of concentration, still indicating dipolar interactions. On the other hand, the microwave frequency dependence of a broad gef ≈ 2 line, which coexists at these concentrations with the gef = 4.3 line, shows that the former line is due to pairs or small clusters of exchange-coupled Fe3+ ions. The temperature dependence of the gef ≈ 2 line intensity in 0.1 mol Fe2O3 glass is consistent with a more antiferromagnetic character by comparison with the 0.05 mol Fe2O3 glass, which is attributed to an appearance, at higher Fe2O3 contents, of iron-containing microclusters not incorporated in the random glass network, with smaller distances between the paramagnetic ions. These microcluster are probably the origin of a new narrow line superposed with the broad gef ≈ 2 line in the low-temperature EPR spectra.  相似文献   

15.
Single crystals of ruby have been obtained from fluxed melts based on the systems Li2O–MoO3, Li2O–WO3, Na2O–WO3, 2PbO–3V2O5, PbO–V2O5–WO3, PbF2–Bi2O3 and Na3AlF6 by both the TSSG method and spontaneous crystallization at the temperatures 1330–900 °C. Al2O3 solubility has been measured for the flux composition of 2Bi2O3–5PbF2 in the temperature range 1200–1000 °C and dissolution enthalpy has been defined as 29.4 KJ/Mol. The composition of grown crystals was studied by electron microprobe analysis. The synthetic ruby contains from 0.51 to 6.38 at% of chromium admixture depending on the crystal growth conditions. Experimental results on growth conditions, composition and morphology of grown crystals are presented for each flux and temperature interval.  相似文献   

16.
K. Hirao  T. Komatsu  N. Soga 《Journal of Non》1980,40(1-3):315-323
Mössbauer absorption measurements have been made at room temperature on 57Fe in iron sodium silicate glasses containing 3–15 mol% Fe2O3 and various iron alkali silicate crystals in order to study the state of iron in these glasses. The spectra of all the glasses gave one doublet with a quadrupole splitting varying from 0.73–0.78 mm s−1, while those of Na2O · Fe2O3 · 4 SiO2 and 5 Na2O · Fe2O3 · 8 SiO2 crystals showed much smaller quadrupole splitting, 0.28 mm s−1 and 0.10 mm s−1, respectively, and an asymmetrical doublet of much narrower linewidth. When sodium was replaced by other alkali metals of larger size, such as K and Cs, in MFeSi2O6 and MFeSi3O8 crystals, the quadrupole splitting became wider and approached to 0.73 mm s−1. Such a variation was not observed for glasses. These results suggest that a larger number of non-identical sites exist in iron sodium silicate glasses than in the corresponding crystals.  相似文献   

17.
We studied the structural and optical properties of a set of nominally undoped epitaxial single layers of InxGa1−xN (0<x0.2) grown by MOCVD on top of GaN/Al2O3 substrates. A comparison of composition values obtained for thin (tens of nanometers) and thick (≈0.5 μm) layers by different analytical methods was performed. It is shown that the indium mole fraction determined by X-ray diffraction, measuring only one lattice parameter strongly depend on the assumptions made about strain, usually full relaxation or pseudomorphic growth. The results attained under such approximations are compared with the value of indium content derived from Rutherford backscattering spectrometry (RBS). It is shown that significant inaccuracies may arise when strain in InxGa1−xN/GaN heterostructures is not properly taken into account. Interpretation of these findings, together with the different criteria used to define the optical bandgap of InxGa1−xN layers, may explain the wide dispersion of bowing parameters found in the literature. Our results indicate a linear, Eg(x)=3.42−3.86x eV (x0.2), “anomalous” dependence of the optical bandgap at room temperature with In content for InxGa1−xN single layers.  相似文献   

18.
Heavily carbon-doped p-type InxGa1−xAs (0≤x<0.49) was successfully grown by gas-source molecular beam epitaxy using diiodomethane (CH2I2), triethylindium (TEIn), triethylgallium (TEGa) and AsH3. Hole concentrations as high as 2.1×1020 cm−3 were achieved in GaAs at an electrical activation efficiency of 100%. For InxGa1−xAs, both the hole and the atomic carbon concentrations gradually decreased as the InAs mole fraction, x, increased from 0.41 to 0.49. Hole concentrations of 5.1×1018 and 1.5×1019 cm−3 for x = 0.49 and x = 0.41, respectively, were obtained by a preliminary experiment. After post-growth annealing (500°C, 5 min under As4 pressure), the hole concentration increased to 6.2×1018 cm−3 for x = 0.49, probably due to the activation of hydrogen-passivated carbon accepters.  相似文献   

19.
The vapor phase epitaxy of thin epilayers of VO2 and V1−xCrxO2 on TiO2 transparent substrates is described. Chemical vapor deposition occurs by reacting a (VOCL3/CrO2Cl2/H2O/H2) mixture at about 800°C using argon as a carrier gas. The preparation of pure VO2 requires special care to make it homogeneously stoichiometric and to obtain steep concentration profiles at the TiO2/VO2 interface. Layers were obtained which had electrical and optical properties comparable to the best bulk crystals grown by other techniques. Homogeneous solid solutions of V1−xCrxO2 epilayers were also grown for the first time in the range o < x < 0.17. Chromium concentration and homogeneity were determined by electron microprobe analysis. The separation coefficient k was also found to vary with x. It is close to unity below x = 0.001 and above this value Cr is incorporated more easily. High quality heteroepitaxial layers (1 cm2 area, 1 to 30 μm thickness) of V1−xCrxO2 have for the first time allowed the measurement of the optical absorption coefficient.  相似文献   

20.
Monolithic glasses with compositions 2MO · 2Al2O3 · 5SiO2, being M=Ni and equimolar mixtures of Ni and Mg, were prepared at 1650 °C by melting mixtures of raw materials. The crystallization of monoliths was produced by heat-treatment at several temperatures up to 1200 °C. The crystallization sequence was followed by differential thermal analysis (DTA), X-ray powder diffraction (XRD), field emission scanning electron microscopy (FESEM) and energy dispersive X-ray (EDX) and diffuse reflectance spectroscopies. Surprisingly, the only crystalline phase formed after heating up to 1100 °C was a nickel-containing aluminate spinel for both compositions. The microstructural characterization indicated the volume crystallization of well formed octahedral crystals of spinel with smaller size than 500 nm. Finally, it has been proved that nickel-containing aluminosilicate glasses could be converted into μ- or -cordierite- and spinel-based glass-ceramics by thermal treatment of powdered glasses and monolithic bodies, respectively.  相似文献   

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