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1.
We report on the properties of (1−x)SrBi2Ta2O9xBi3TaTiO9 solid solution thin films for ferroelectric non-volatile memory applications. The solid solution thin films fabricated by modified metalorganic solution deposition technique showed much improved properties compared to SrBi2Ta2O9. A pyrochlore free crystalline phase was obtained at a low annealing temperature of 600°C and grain size was found to be considerably increased for the solid solution compositions. The film properties were found to be strongly dependent on the composition and annealing temperatures. The measured dielectric constant of the solid solution thin films was in the range 180–225 for films with 10–50% of Bi3TaTiO9 content in the solid solution. Ferroelectric properties of (1−x)SrBi2Ta2O9xBi3TaTiO9 thin films were significantly improved compared to SrBi2Ta2O9. For example, the observed remanent polarization (2Pr) and coercive field (Ec) values for films with 0.7SrBi2Ta2O9–0.3Bi3TaTiO9 composition, annealed at 650°C, were 12.4 μC/cm2 and 80 kV/cm, respectively. The solid solution thin films showed less than 5% decay of the polarization charge after 1010 switching cycles and good memory retention characteristics after about 106 s of memory retention. The improved microstructural and ferroelectric properties of (1−x)SrBi2Ta2O9xBi3TaTiO9 thin films compared to SrBi2Ta2O9, especially at lower annealing temperatures, suggest their suitability for high density FRAM applications.  相似文献   

2.
Compositional dependence of ionic conductivity in the system ZrO2–Y2O3–Yb2O3 was investigated in the temperature range 573–873 K using the complex impedance technique. It was shown that the conductivity decreases with increasing concentration of Yb2O3 in the system ZrO2–Y2O3–Yb2O3. Analyzing the experimental data according to the classic Arrhenius equation showed that such an experimental phenomenon can be attributed to the tighter association between Yb3+ and oxygen vacancy, compared with that between Y3+ and oxygen vacancy, which hinders the migration of oxygen vacancy in the materials.  相似文献   

3.
The studies of the (1 − x)Pb(Sc1/2Nb1/2)O3xPbTiO3 (PSN–PT) single crystals reveal that the chemical and physical properties of the materials are affected by the growth conditions. By the measurements of the dielectric constant as a function of temperature upon cooling, it is found that crystals grown from the same charged stoichiometric composition (x = 0.425), but under different flux environments (i.e. the composition of flux and the flux to PSN–PT ratios are varied), show anomalies (i.e. phase transitions) at different temperatures. This phenomenon is attributed to the complex local chemical structure of the PSN–PT solid solution single crystals with B-site random occupancy of three different cations (Sc3+, Nb5+ and Ti4+). The dielectric and domain structure of the PSN–PT crystals with composition near the morphotropic phase boundary (MPB) are investigated, showing much more complex situations compared with Pb(Sc1/2Nb1/2)O3.  相似文献   

4.
We report measurements of the energy transfer between Er3+ and Ce3+ in Y2O3. The transition between the Er3+ 4I11/2 and 4I13/2 excited states can be stimulated by energy transfer to Ce3+, augmenting the population in the 4I13/2 state at the expense of that in the 4I11/2 state. Experiments were performed on Y2O3 planar waveguides doped with 0.2 at.% erbium and 0–0.42 at.% cerium by ion implantation. From measurements of Er3+ decay rates as a function of cerium concentration we derive an energy transfer rate constant of 1.3×10−18 cm3/s. The efficiency of the energy transfer amounts to 0.47 at 0.42 at.% cerium. The energy transfer rate constant measured in Y2O3 is two times smaller for Er3+→Ce3+ than that for Er3+→Eu3+ in the same material.  相似文献   

5.
Glasses of various compositions in the system (100 − x)(Li2B4O7) − x(SrO–Bi2O3–0.7Nb2O5–0.3V2O5) (10  x  60, in molar ratio) were prepared by splat quenching technique. The glassy nature of the as-quenched samples was established by differential thermal analyses (DTA). The amorphous nature of the as-quenched glasses and crystallinity of glass nanocrystal composites were confirmed by X-ray powder diffraction studies. Glass composites comprising strontium bismuth niobate doped with vanadium (SrBi2(Nb0.7V0.3)2O9−δ (SBVN)) nanocrystallites were obtained by controlled heat-treatment of the as-quenched glasses at 783 K for 6 h. High resolution transmission electron microscopy (HRTEM) of the glass nanocrystal composites (heat-treated at 783 K/6 h) confirm the presence of rod shaped crystallites of SBVN embedded in Li2B4O7 glass matrix. The optical transmission spectra of these glasses and glass nanocrystal composites of various compositions were recorded in the wavelength range 190–900 nm. Various optical parameters such as optical band gap (Eopt), Urbach energy (ΔE), refractive index (n), optical dielectric constant and ratio of carrier concentration to the effective mass (N/m*) were determined. The effects of composition of the glasses and glass nanocrystal composites on these parameters were studied.  相似文献   

6.
王亚楠  刘鑫  李兆  曹静  王永锋  吴坤尧 《功能材料》2021,(3):3160-3163,3176
采用高温固相法制备了Lu2.94Al5O12:0.06Ce3+绿色荧光粉。通过X射线粉末衍射(XRD)、扫描电子显微镜(SEM)和光致发光光谱(PL)对样品的物相、形貌及发光性能进行了表征。结果表明,所合成的Lu2.94Al5O12:0.06Ce3+绿色荧光粉为立方晶系,表面为类球形。激发光谱中,位于340和450 nm的激发峰分别归属于4f的两个能级到5d能级的跃迁而产生的吸收,340 nm处的激发峰是由于发光是由于2F5/2到5d的跃迁,而450nm处的激发峰是由于2F7/2到5d的跃迁。发射光谱中,位于525 nm的发射峰对应Ce3+的4f-5d电子跃迁。当Ce3+掺杂量为6%,1500℃煅烧5 h时,Lu2.94Al5O12:0.06Ce3+绿色荧光粉CIE色坐标为(0.3683,0.5959),是一种可以用作白光LED的绿色荧光粉。  相似文献   

7.
Bi2O3·B2O3 glasses doped with rare-earth oxides (RE2O3) (RE3+ = La3+, Pr3+, Sm3+, Gd3+, Er3+ and Yb3+) were prepared by the melting–quenching method. The relationships between composition and properties were demonstrated by IR, DSC, XRD and SEM analysis. The results show that the network structure resembles that of undoped Bi2O3·B2O3 glass, composing of [BO3], [BO4] and [BiO6] units. RE2O3 stabilizes the glass structure as a modifier. Transition temperature (Tg) increases linearly with cationic field strength (CFS) of RE3+. La2O3, Pr2O3, Sm2O3 and Gd2O3 are benefit to promote the formation of BiBO3 crystal. When Er2O3 and Yb2O3 are introduced, respectively, the main crystal phase changes to Bi6B10O24. Transparent surface crystallized samples are obtained by reheating at 460–540 °C for 5 h. In this case, needle like BiBO3 crystal or rare-earth-doped BiBO3 crystal (PrxBi1−xBO3 and GdxBi1−xBO3) are observed, which is promising for non-linear optical application.  相似文献   

8.
CeO2–SnO2 and CeO2–TiO2 thin films were prepared by the Pechini method and their characteristics were compared, using a fractional factorial design to quantify the effect of five preparation variables. It was observed that CeO2–SnO2 electrodes show a greater electrochemical response than the CeO2–TiO2 films. The best intercalation charge densities were 18.11 and 9.91 mC/cm2 for CeO2–SnO2 and CeO2–TiO2, respectively. Both films were optically inactive with transparencies, in most cases, higher than 90%.  相似文献   

9.
Thin films of the system xAl2O3–(100 − x)Ta2O5–1Er2O3 were prepared by a sol–gel method and a dip-coating technique. The influences of the composition and the crystallization of the films on Er3+ optical properties were investigated. Results of X-ray diffraction indicated that the crystallization temperature of Ta2O5 increased from 800 to 1000 °C with increased values of x. In crystallized films, the intensities of the visible fluorescence and upconversion fluorescence tend to decrease with an increase in x values, due to the high phonon energy of Al2O3; the strongest fluorescence is observed in a crystallized film for x = 4 heat treated at 1000 °C. In amorphous films obtained by heat treatment at relatively low temperatures the Er3+ fluorescence could not be observed because strong fluorescence from organic residues remaining in the films thoroughly covered the Er3+ fluorescence. On the other hand, the Er3+ upconversion fluorescence in the amorphous films was observed to be stronger than that in the crystallized films. The strongest upconversion fluorescence is observed in an amorphous film for x = 75 heat treated at 800 °C.  相似文献   

10.
以凹凸棒土(ATP)为载体, 以Ce(NO3)3·6H2O和La(NO3)3·6H2O为原料, 以C6H12N4(HMT)为沉淀剂, 采用均相沉淀法制备了不同铈镧比的CeO2-La2O3/ATP(Ce:La=9:1~3:7, 摩尔比, 下同)复合材料。用TG-DSC、 TEM、 XRD和FTIR对所制备复合材料的微观结构和形貌进行表征, 并分别考察不同铈镧比和H2O2添加量对酸性品红模拟废水脱色降解的影响。结果表明, 当Ce:La=5:5时, CeO2-La2O3固溶体颗粒均匀分布在ATP表面, 颗粒尺寸为5~10 nm。随着铈镧摩尔比的增加, 酸性品红的降解率呈先增后减的趋势, 且当Ce:La=5:5、 H2O2为10 mL、 酸性品红浓度为100 mg/L时, 降解效果最好, 300 min后的最大降解率达82%。  相似文献   

11.
A series of glasses in the xPb3O4–(1−x)P2O5 (red lead phosphate) (RLP) system with ‘x' varying from 0.075 to 0.4 were prepared by the single-step melt quenching process from Pb3O4 and NH4H2PO4. The optical absorption spectra of these glasses have been recorded in the ultraviolet region from 200 to 400 nm and the fundamental absorption edges have been identified. The optical band gap Eopt values have been determined for all the glasses using the known theories. The (Eopt) values vary from 4.90 to 3.21 eV the highest being 4.57 eV, corresponding to the most stable glass of x=0.225. The absorption edge is attributed to the indirect transitions and the origin of the Urbach energy ΔE is suggested to be thermal vibrations. These glasses promise as potential candidates for application in optical technology compared to simple xPbO–(1−x)P2O5 (lead phosphate) (LP) glasses.  相似文献   

12.
以菱镁矿风化石、工业Al2O3和SiO2微粉为原料, 固相反应烧结合成制备堇青石。通过在反应物中分别加入不同含量的Eu2O3、Dy2O3和Er2O3, 研究分析和对比了Eu3+、Dy3+和Er3+对堇青石晶相组成、晶粒大小、晶胞常数、结晶度及显微结构的影响。采用XRD和SEM表征试样中的晶相和显微结构, 利用X'Pert Plus软件对结晶相的晶胞参数和结晶度进行分析, 采用半定量法对试样晶相组成进行计算, 利用Scherrer公式计算堇青石的晶粒大小。结果表明: 由于Eu2O3、Dy2O3和Er2O3的加入, 通过固相反应烧结所得堇青石试样中出现了莫来石相, Eu3+、Dy3+和Er3+对Mg2+的置换作用改变了堇青石相晶格常数和晶胞体积。随着添加剂含量的增加, 堇青石结构中液相量增加, 相对结晶度降低, 常温致密度提高, 堇青石晶粒粒径减小。综合对比分析, Eu2O3对堇青石晶相转变的影响程度最弱, Er2O3对堇青石晶相转变的影响程度最强, 对提高合成堇青石的烧结性和热震稳定性效果最好。  相似文献   

13.
Absorption and emission spectra are given for Yb3+-doped Y2O3, Lu2O3 and Gd2O3 at room temperature. Y2O3 and Lu2O3 as close cubic matrices, show Yb3+ similar spectra different of Yb3+ in Gd2O3 monoclinic structure. Here, we use a new method to study and optimize the main spectroscopic properties with only one concentration gradient sample. Finally, assignments of Yb3+ Stark levels and Raman vibrations in Y2O3, Lu2O3 and Gd2O3 single crystal are given.  相似文献   

14.
Doping and electrical characteristics of in-situ heavily B-doped Si1−xyGexCy (0.22<x<0.6, 0<y<0.02) films epitaxially grown on Si(100) were investigated. The epitaxial growth was carried out at 550°C in a SiH4–GeH4–CH3SiH3–B2H6–H2 gas mixture using an ultraclean hot-wall low-pressure chemical vapor deposition (LPCVD) system. It was found that the deposition rate increased with increasing GeH4 partial pressure, and only at high GeH4 partial pressure did it decrease with increasing B2H6 as well as CH3SiH3 partial pressures. With the B2H6 addition, the Ge and C fractions scarcely changed and the B concentration (CB) increased proportionally. The C fraction increased proportionally with increasing CH3SiH3 partial pressures. These results can be explained by the modified Langmuir-type adsorption and reaction scheme. In B-doped Si1−xyGexCy with y=0.0054 or below, the carrier concentration was nearly equal to CB up to approximately 2×1020 cm−3 and was saturated at approximately 5×1020 cm−3, regardless of the Ge fraction. The B-doped Si1−xyGexCy with high Ge and C fractions contained some electrically inactive B even at the lower CB region. Resistivity measurements show that the existence of C in the film enhances alloy scattering. The discrepancy between the observed lattice constant and the calculated value at the higher Ge and C fraction suggests that the B and C atoms exist at the interstitial site more preferentially.  相似文献   

15.
High temperature persistent spectral hole burning up to room temperature has been observed in Eu3+ ions doped oxy-fluoride glasses with a composition of 30CaF2–10Al2O3–60B2O3 (mol%) melted in a reducing atmosphere. The hole stability was studied through light-induced hole refilling and temperature cycling experiments. The burned holes survive thermal cycling to 300 K due to a high barrier height of 0.69 eV in the sample.  相似文献   

16.
A large glass-forming domain has been identified in the Pb2P2O7–Ag4P2O7–AgI system. The physical properties have been determined as a function of AgI content. The ionic conductivity has been studied as a function of the Ag+ ion total concentration and the Ag+ ion concentration issued from the AgI component. The structure and electrical properties of obtained glasses are compared with those of ionic glasses of the Ag4P2O7–AgI system.  相似文献   

17.
The crystal structure, thermal expansion and electrical conductivity of the solid solution Nd0.7Sr0.3Fe1−xCoxO3 for 0≤x≤0.8 were investigated. All compositions had the GdFeO3-type orthorhombic perovskite structure. The lattice parameters were determined at room temperature by X-ray powder diffraction (XRPD). The pseudo-cubic lattice constant decreased continuously with x. The average linear thermal expansion coefficient (TEC) in the temperature range from 573 to 973 K was found to increase with x. The thermal expansion curves for all values of x displayed rapid increase in slope at high temperatures. The electrical conductivity increased with x for the entire temperature range of measurement. The calculated activation energy values indicate that electrical conduction takes place primarily by the small polaron hopping mechanism. The charge compensation for the divalent ion on the A-site is provided by the formation of Fe4+ ions on the B-site (in preference to Co4+ ions) and vacancies on the oxygen sublattice for low values of x. The large increase in the conductivity with x in the range from 0.6 to 0.8 is attributed to the substitution of Fe4+ ions by Co4+ ions. The Fe site has a lower small polaron site energy than Co and hence behaves like a carrier trap, thereby drastically reducing the conductivity. The non-linear behaviour in the dependence of log σT with reciprocal temperature can be attributed to the generation of additional charge carriers with increasing temperature by the charge disproportionation of Co3+ ions.  相似文献   

18.
The present work is carried out to investigate the effect of co-substitution of non-magnetic ions, Mg+2 and Ti+4, at Fe site in a basic nickel ferrite. The single-phase formation of the materials was confirmed by XRD analysis. The effective modifications in the exchange interactions were observed from structural, magnetic and Mössbauer studies. The substitution of the two ions, Mg2+ and Ti4+, at Fe site reduces the saturation magnetization, Néel temperature (TN) and initial permeability (μi) with increasing concentration of substituents. The observed variations in different properties were discussed on the basis of the site occupancy of the metal ions in the crystal structures. 57Fe Mössbauer studies reveal the reduction in magnetic moment on substitution. The relaxation is observed for the higher substitution level (x≥0.4) evident from the Mössbauer studies. The doublet along with the two sextet is observed in the Mössbauer spectra which is found to increase with the increased level of substituents and explained on the basis of domain wall oscillation and displacement model.  相似文献   

19.
Dense TiC–Al2O3–Al composite was prepared with Al, C and TiO2 powders by means of electric field-activated combustion synthesis and infiltration of the molten metal (here Al) into the synthesized TiC–Al2O3 ceramic. An external electric field can effectively improve the adiabatic combustion temperature of the reactive system and overcome the thermodynamic limitation of reaction with x < 10 mol. Thereby, it can induce a self-sustaining combustion synthesis process. During the formation of Al2O3–TiC–Al composite, Al is molten first, and reacted with TiO2 to form Al2O3, followed by the formation of TiC through the reaction between the displaced Ti and C. Highly dense TiC–Al2O3–Al with relative density of up to 92.5% was directly fabricated with the application of a 14 mol excess Al content and a 25 V cm−1 field strength, in which TiC and Al2O3 particles possess fine-structured sizes of 0.2–1.0 μm, with uniform distribution in metal Al. The hardness, bending strength and fracture toughness of the synthesized TiC–Al2O3–Al composite are 56.5 GPa, 531 MPa and 10.96 MPa m1/2, respectively.  相似文献   

20.
We report on the experimental results of frequency dependent a.c. conductivity and dielectric constant of SrTiO3 doped 90V2O5–10Bi2O3 semiconducting oxide glasses for wide ranges of frequency (500–104 Hz) and temperature (80–400 K). These glasses show very large dielectric constants (102–104) compared with that of the pure base glass (≈102) without SrTiO3 and exhibit Debye-type dielectric relaxation behavior. The increase in dielectric constant is considered to be due to the formation of microcrystals of SrTiO3 and TiO2 in the glass matrix. These glasses are n-type semiconductors as observed from the measurements of the thermoelectric power. Unlike many vanadate glasses, Long's overlapping large polaron tunnelling (OLPT) model is found to be most appropriate for fitting the experimental conductivity data, while for the undoped V2O5–Bi2O3 glasses, correlated barrier hopping conduction mechanism is valid. This is due to the change of glass network structure caused by doping base glass with SrTiO3. The power law behavior (σac=A(ωs) with s<1) is, however, followed by both the doped and undoped glassy systems. The model parameters calculated are reasonable and consistent with the change of concentrations (x).  相似文献   

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