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1.
The absorption tail of undoped and Si-doped GaN films was investigated at different temperatures and under applied electric field. It was found that the spectral dependence of logarithm of absorption coefficient is combined of two linear functions: ln[(hν)]=C1+(hν−Eg)/U1 for hν<3.42 eV and ln[(hν)]=C2+(hν−Eg)/U2 for 3.44<hν<3.5 eV with Urbach energies U1=400–470 meV and U2=10–20 meV. The influence of an electric field effect on the absorption spectra follows the Dow and Redfield theory. It was shown that the intrinsic electric field about 105 V/cm exists in our samples. The implemented analysis of the absorption spectra gives the qualitative method of film characterization.  相似文献   

2.
C.M Brodbeck 《Journal of Non》1980,40(1-3):305-313
The g = 4.3 ESR signal of Fe3+ in glass is usually attributed to a “fully rhombic” distortion characterized by E = D/3, where E and D are the splitting constants belonging to the second-order rhombic and axial terms, respectively, of the crystal-field interaction. An alternate statistical approach to the origin of this signal has been given by Peterson et al. on the basis of axial symmetry and broad overlapping distribution of g| and g that are correlated in opposition (negatively) resulting in spiking at g 4.3. The present paper reports detailed computer studies of the distribution of effective g value produced by large variations in both D and E to test whether negative g-value correlations leading to spiking at g 4.3 are generable from site dependent fluctuations in the second-order crystal-field terms. It is found that the ESR line arising from the middle Kramer's doublet in the fully rhombic limit (ED/3, |D| > hν) uniquely generates the negative g-value correlation required for spiking at g 4.3.  相似文献   

3.
Y. Tokuda  T. Uchino  T. Yoko 《Journal of Non》2003,330(1-3):61-65
We obtained the chemical shielding constants of 29Si in Li2S–SiS2 glass system on the basis of molecular orbital calculations. The relative chemical shieldings calculated at the HF/6-31G* level is −16.1 and −23.8 ppm for E(1) and E(0), respectively. These calculations are in good agreement with the previous NMR study: σ(E(2))>σ(E(1))>σ(E(0)). It is found theoretically that incorporation of Li2S into SiS2 does not influence the 29Si chemical shift, while incorporation of Li2O into SiO2 does to a significant extent. It is also found that the existence of oxygen in Li2S–SiS2 glasses increases the chemical shielding of 29Si by about 25 ppm, which is in good agreement with the experimental result.  相似文献   

4.
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   

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.
An attempt is made to calculate the compositional dependence of the optical gap (Eg) in Ge1−xSx, Ge40−xSbxS60 and (As2S3)x(Sb2S3)1−x non-crystalline systems in an alloy-like approach. From the comparison of both the experimental dependence of Eg and the calculated ones using the Shimakawa relation [Eg AB = YEg A + (1−Y)Eg B] it is assumed that this equation is useful for such systems or parts of the systems which behave like almost ideal solutions.  相似文献   

7.
《Journal of Non》2000,270(1-3):137-146
The Ge25Ga5Se70 and Ge30Ga5Se65 pure and Pr3+-doped glasses were prepared by direct synthesis from elements and PrCl3. It was found that up to 1 mol% PrCl3 can be introduced in the Ge25Ga5Se70 and Ge30Ga5Se65 glasses. Both types of glasses with overstoichiometric and substoichiometric content of Se were homogeneous and of black color. The optical energy gap is Eoptg=2.10 eV, and the glass transition temperature is Tg=543 K for Ge25Ga5Se70 and Tg=633 K for Ge30Ga5Se65. The long-wavelength absorption edge is near 14 μm and it corresponds to multiphonon processes. Doping by Pr3+ ions creates absorption bands in transmission spectra, which can be assigned to the electron transitions from the ground 3H4 level to the higher energy levels of Pr3+ ions 3H5, 3H6, 3F2, 3F3 and 3F4, respectively. By excitation with YAG:Nd laser line (1064 nm), two intense luminescence bands (1343 and 1601 nm) were excited. The first band can be ascribed to electron transitions between 1G4 and 3H5 energy levels of Pr3+ ions. Full width at half of maximum (FWHM) of the intensity of luminescence was found to be 70 nm for (Ge25Ga5Se70)1 − x(PrCl3)x and (Ge30Ga5Se65)1 − x(PrCl3)x glasses. The FWHM in selenide glasses is lower than in halide and sulphide glasses. The second luminescence band (1601 nm) can be probably ascribed to the transitions between 3F3 and 3H4 energy levels of Pr3+ ions. The absorption and luminescence spectra of Pr3+ ions in studied glasses are slightly influenced by stoichiometry of glassy matrix. The Raman spectra of studied glasses were deconvoluted and assignment of Raman bands to individual vibration modes of basic structural units was suggested. The structure of studied glasses is mainly formed by corner-sharing and edge-sharing GeSe4 tetrahedra. The vibration modes of Ga-containing structural units were not found, they are apparently overlapping with Ge-containing structural units due to small difference between atomic weights of Ge and Ga. In the glasses with substoichiometry of Se, the Ge–Ge bonds of Ge2Se6 structural units were found. In Se-rich glasses the Se–Se vibration modes were found. In all studied glasses also ‘wrong' bonds between like atoms were found in small amounts. Maximum phonon energy of studied glasses is 320 cm−1.  相似文献   

8.
Vanadium EXAFS spectra of 50V2O5-50P2O5 glasses with different C = V+4/Vtot have been measured. The V-O distances increase by ΔR1 = (0.03 ± 0.02) Å to ΔR2 = (0.07 ± 0.03) Å going from a glass with C = 0.64 to C = 0.84 and from C = 0.51 to C = 0.84, respectively. The EXAFS data show a basically similar structure of the vanadium sites for both the V4+ and V5+ ionic states. The density of the glasses increases with C from the value d1 = 2.81 g/cm3 for C = 0.51 to d2 = 2.92 g/cm3 for C = 0.84 indicating a more random packing of glass units.  相似文献   

9.
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   

10.
John Schroeder 《Journal of Non》1980,40(1-3):549-566
The Brillouin spectra of binary and ternary silicate glasses were investigated and absolute values for the Pockets coefficients p12 and p44 and (p11p12) were calculated from the measured spectra. The results were interpreted as to the density and refractive index dependence of the Pockels coefficients in terms of the theoretical treatments by Carleton, Mueller and Sipe. From the measured p12 and p44 values the quantity (∂ε/∂p), the change of the dielectric constant with respect to density, was calculated and compared with (∂ε/∂) evaluated from the Lorentz-Lorenz equation, Drude equation and the Carleton model. The Lorentz-Lorenz and Drude equations overestimated the magnitude of (∂ε/∂), while the Carleton model with its two limiting cases set upper and lowe bounds to (∂ε/∂). From the (∂ε/∂) results the strain polarizability constant (λ0) was determined and its physical significance discussed. In general, the alkali-oxide concentration dependence of the Pockels coefficients of various silicate glasses has been measured and qualitatively explained by several existing theoretical formulations.  相似文献   

11.
Xiao Shaozhan  Meng Qingan   《Journal of Non》1986,80(1-3):195-200
11B Fourier transform spectra have been used to study the structure of Na2O---B2O3---SiO2 glasses of mid-alkali content. Based on the measurements of the fraction N4 of four-coordinated borons, it has been found that for K = mol.% SiO2/mol.% B2O3 8 and R = mol.% Na2O/mol.% B2O3 = 1, N4 is obviously smaller than 1 rather than equal to 1 as assumed in the relevant literature. Only when R reaches a value appropriately greater than 1, can the case where N4 = 1 occur. A structural model suggested in this paper can satisfactorily explain the fact.  相似文献   

12.
The 11B NMR spectra of xRb2S+(1−x)B2S3 glasses in the range 0x0.75 and of xCs2S+(1−x)B2S3 glasses in the range 0x0.60 are reported. The addition of Rb2S to B2S3 creates on average approximately two and one-half tetrahedral borons for each added sulfur ion, whereas it is found that the addition of Cs2S creates approximately 2 tetrahedral borons for each added sulfur ion. This behavior while more similar to that seen in the alkali borate glasses, contrasts that seen in the Na and K thioborate glasses, where six to eight and three, respectively, tetrahedral borons are formed for every sulfide anion added to the glass. These findings are supported by the IR and 11B NMR spectra of the di-thioborate polycrystals (c-Rb2S:2B2S3 and c-Cs2S:2B2S3) whose structures appear to be comprised of two BS4 tetrahedrals and two BS3 trigonals (N40.5) like that in the alkali di-borate phases for both Rb and Cs. Unlike the 11B NMR resonances of the sodium thioborate glasses where a single sharp line is observed for the tetrahedral boron site and a single quadrupolar broadened line is observed for all the trigonal sites, a third resonance line is observed at high alkali fractions for the rubidium and cesium thioborate glasses. This new structural feature may arise from asymmetric MBS2 (meta-thioborate groups) or tetrahedral boron groups possessing a non-bridging sulfur.  相似文献   

13.
Alkali diffusion and electrical conductivity in sodium borate glasses   总被引:2,自引:0,他引:2  
Y.H Han  N.J Kreidl  D.E Day   《Journal of Non》1979,30(3):241-252
The diffusion coefficient of sodium, 22Na, and silver, 110Ag, and electrical conductivity for sodium borate glasses (4–24 mol% Na2O) has been measured from 100°C to slightly below the glass transition temperature, Tg. Unlike silicate glasses where the self-diffusion coefficient is much larger than the impurity diffusion coefficient, DNa and DAg had close to the same magnitude in the sodium borate glasses. In some glasses, DAg was slightly larger than DNa. Na2O-Ag2O-B2O3 glasses show a relatively small mixed alkali effect, despite the significant mass difference between Ag(≈108) and Na(≈23). It is concluded that the mixed alkali effect is more dependent upon the difference in ionic radii rather than differences in mass.  相似文献   

14.
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   

15.
为改善CuCr2O4黑色颜料呈色性能,将Fe3+掺杂进入CuCr2O4晶体中,采用共沉淀法制备CuCr2-xFexO4(x=0,0.04,0.05,0.06,0.07),并对所制备样品进行TG-DTA、XRD、SEM、Raman、XPS、UV-Vis吸收光谱和色度值的测试与表征。结果表明,Fe以三价态固溶进入Cr3+位置,未出现杂质相,得到的CuCr2-xFexO4晶粒细小、分散均匀。Fe3+掺杂可减小CuCr2O4的禁带宽度,从1.25 eV减小到1.08 eV,禁带宽度的减小是由于2p(O2-)→3d(Fe3+)和Fe3+的d-d(6A1g4T1g6A1g4T2g)电荷跃迁引起的。禁带宽度的减小使得黑色颜料对可见光(380~780 nm)的吸收率提高,L*值减小,呈现出良好的黑度。得到的最佳黑色颜料为CuCr1.95Fe0.05O4,L*=17.63,a*=-0.77,b*=-1.61。  相似文献   

16.
The evolution of the gelation of silica gel was studied by means of Fourier transform infrared spectroscopy. The gel was prepared by hydrolysis and polycondensation of tetraethyl orthosilicate in the presence of water with HCl, and with formamide (DCCA) in methanol either added or not. For both systems the gelation process was followed by the time evolution of the ν-Si---O(H) and ν-Si---O(Si) absorption bands. In the systems which used formamide, the ν-Si---O(H) peak shifts from ≈ν = 950 cm−1 for τ = 0 to ≈ν = 968 cm−1 (t = tgel) and tends to shifts to 975 cm−1 over a long period of time (t = 100tgel), and a slow rate evolution between 0.1 and 0.4 tgel is observed. In the absence of formamide the same evolution is observed without the slow rate plateau. For ν-Si-O(Si) absorption bands, the band near 1075 cm−1 remains practically unchanged in both systems during the experiment time, but the second absorption band at 1133 cm−1 is split into two bands each having its own specific evolution, depending on composition and temperature.  相似文献   

17.
The dc conductivity and optical properties of WO3---B2O3---ZnO glasses containing up to 80% WO3 have been measured and are analyzed using small polaron hopping theory. The thermal hopping energy EH is estimated from the temperature dependence of the conductivity, but an accurate determination of its value is not possible due to the continuous curvature of the conductivity plots. The optical absorption is dominated by W5+ ligand field absorption in the visible and by a band edge at 3.5 eV; the absorption by the small polarons is too weak to be observed directly. The optical hopping energy Eo is determined from the thermomodulation spectra. The values obtained for EH and Eo can be combined to give a polaron binding energy and a disorder energy both approximately equal to 0.4 eV. A similar disorder energy is obtained from an analysis of the electro-modulation spectra in the band edge region.  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.
本文在水热条件下合成了一例同多钼酸阴离子[δ-Mo8O26]4-基配合物[Co(bipbc)(δ-Mo8O26)0.5(H2O)3] (bipbc=4,4-双[(4-羧基吡啶)甲基]联苯),其为一维链状结构,包含环型双核钴配合物[Co2(bipbc)2]4+和[δ-Mo8O26]4-簇。该配合物结晶于单斜晶系,P21/n空间群,a=1.147 9(8) nm,b=1.440 9(11) nm,c=2.082 9(16) nm,β=93.469(2)°,V=3.438 8(4) nm3,Z=4,Mr=1 129.18,F(000)=2 204,μ=1.979 mm-1,Dc=2.181 mg·m-3,S=1.019,R1=0.056 2,wR2=0.137 7。光催化性质研究表明,在可见光、近红外光和全光谱的光照条件下,标题配合物对龙胆紫(GV)和亚甲基蓝(MB)的降解,表现出一定的光催化活性。  相似文献   

20.
Magnesium polyphosphate glasses with molar ratios, y=n(MgO)/n(P2O5), ranging from 1.0 to 1.9 have been examined by X-ray and neutron scattering and 31P magic angle spinning nuclear magnetic resonance spectroscopy to extract information on their short-range, intermediate-range and submicroscopic structure. The depolymerization of the PO4 chains with rising MgO content is quantitatively described by the increasing concentration of Q1 and Q0 groups determined by NMR. In the pyrophosphate region the Q1 sites disproportionate to Q0 and Q2 groups, whereas there is no disproportionation of the Q2 sites at metaphosphate composition. The shortening of the real-space distances, rm, indicates that the structure of the glasses becomes more compact with progressive depolymerization which is due to the increasing connection of the MgOn polyhedra by sharing the non-bridging oxygen atoms. The Mg–O co-ordination sphere was found to change not significantly in dependence on composition. Heterogeneities about 1 nm in diameter exist in the glasses with MgO content exceeding 46.6 mol% indicated by a weak small angle X-ray scattering.  相似文献   

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