Keywords: لانتانیم سیلیکات; Apatite; Lanthanum silicate; Synchrotron radiation microbeam;
مقالات ISI لانتانیم سیلیکات (ترجمه نشده)
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Keywords: لانتانیم سیلیکات; Silica garden; Lanthanum silicate; Synthesis; Characterization;
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Oxyapatite; Spin-coating; Texturing; Crystallization;
Keywords: لانتانیم سیلیکات; Nitrous oxide; Apatite-type; Lanthanum silicate; Catalyst;
Keywords: لانتانیم سیلیکات; Silica membranes; Cobalt oxide; Lanthanum silicate; Gas separation; Redox
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Apatite-type; Thin films; SOFC; Ionic conductivity;
Keywords: لانتانیم سیلیکات; Apatite-type ionic conductor; Lanthanum silicate; Solid oxide fuel cell; Nano-sized paste; Anode support
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Apatite-type structure; Oxide ion conduction; Solid electrolyte
Keywords: لانتانیم سیلیکات; Oxy-apatite; Solid oxide fuel cells; Electrolyte; Lanthanum silicate; Ionic conductivity
Well-aligned polycrystalline lanthanum silicate oxyapatite grown by reactive diffusion between solid La2SiO5 and gases [SiO+1/2O2]
Keywords: لانتانیم سیلیکات; Reactive diffusion; Lanthanum silicate; Apatite; Crystalline orientation; Oxide-ion conductor; Ceramics;
Sol–gel synthesis and characterization of Zn2+ and Mg2+ doped La10Si6O27 electrolytes for solid oxide fuel cells
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Apatites; Densification; Ionic conductivity; Thermal expansion; Activation energy
Influence of nano-sized LSCF cathode and its firing temperature on electrochemical performance in oxygen-excess-type solid electrolyte (OESE)-based fuel cells
Keywords: لانتانیم سیلیکات; Solid oxide fuel cell; Apatite; Lanthanum silicate; Oxygen-excess solid electrolyte
Magnesium ion distribution and defect concentrations of MgO-doped lanthanum silicate oxyapatite
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Oxyapatite; Defects; Density; Conductivity
Oxygen self-diffusion and conductivity measurements in apatite type electrolyte materials for SOFCs
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Apatite type electrolyte; SOFC; Oxygen diffusion; Self-diffusion; Surface exchange coefficient; Conductivity
Sol-gel synthesis and ionic conductivity of oxyapatite-type La9.33+xSi6O26+1.5x
Keywords: لانتانیم سیلیکات; Electrolyte; Apatite; Lanthanum silicate; Ionic conductivity;
Preparation of dense silicate electrolyte coating with low pressure plasma spraying and very low pressure plasma spraying for intermediate-temperature solid oxide fuel cells
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Low pressure plasma spraying; Very low pressure plasma spraying; Specific permeability; Solid oxide fuel cell
Electrical conductivity and X-ray diffraction analysis of oxyapatite-type lanthanum silicate and neodymium silicate solid solution
Keywords: لانتانیم سیلیکات; Oxyapatite; Oxygen ion conductor; Lanthanum silicate; Neodymium silicate; Synchrotron powder X-ray diffraction;
Electrochemical behavior of mixed conducting oxide cathode on oxygen excess-type solid electrolyte
Keywords: لانتانیم سیلیکات; Solid oxide fuel cell; Lanthanum silicate; Apatite-type electrolyte; Oxygen reduction; Silver nano-particles
Anisotropy of oxide-ion conduction in apatite-type lanthanum silicate
Keywords: لانتانیم سیلیکات; lanthanum silicate; oxide-ion conductor; apatite-type structure; anisotropy of oxide-ion conduction
Oxygen-17 nuclear magnetic resonance measurements on apatite-type lanthanum silicate (La9.33(SiO4)6O2)
Keywords: لانتانیم سیلیکات; Apatite; Lanthanum silicate; Oxide-ion conductor; Solid-state NMR; MQ MAS; High-temperature NMR
Lanthanum silicate thin films for SOFC electrolytes synthesized by magnetron sputtering and subsequent annealing
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Thin films; Electrolyte; Ionic conductivity; Solid Oxide Fuel Cell
Assessment of thermochemically stable apatite La10(SiO4)6O3 as electrolyte for solid oxide fuel cells
Keywords: لانتانیم سیلیکات; D. Apatite; Lanthanum silicate; La10(SiO4)6O3; Solid oxide fuel cells (SOFCs); Thermochemical stability
Effect of cation doping on ionic and electronic properties for lanthanum silicate-based solid electrolytes
Keywords: لانتانیم سیلیکات; Apatite; Oxyapatite; Lanthanum silicate; Solid electrolyte; Solid oxide fuel cell
Effect of substrate surface temperature on the microstructure and ionic conductivity of lanthanum silicate coatings deposited by plasma spraying
Keywords: لانتانیم سیلیکات; Atmospheric plasma spraying; Lanthanum silicate; Ionic conductivity; Substrate temperature;
Low-temperature formation of Ln silicate oxyapatite (Ln = La and Nd) by the water-based sol–gel method
Keywords: لانتانیم سیلیکات; Oxyapatite; Lanthanum silicate; Neodymium silicate; Sol–gel; Low-temperature synthesis; Chemical pulverization
Effect of transition metal additives on electrical conductivity for La-excess-type lanthanum silicate
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Oxyapatite; Apatite; Additive; Solid oxide fuel cell
Fabrication of anode supported SOFC using plasma-sprayed films of the apatite-type lanthanum silicate as an electrolyte
Keywords: لانتانیم سیلیکات; Apatite; Lanthanum silicate; Oxide-ion conductor; Solid oxide fuel cell; Thin film electrolyte; Plasma spraying
Effect of Mg substitution on crystal structure and oxide-ion conductivity of apatite-type lanthanum silicates
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Oxide-ion conductor; Apatite-type structure; Single-crystal X-ray diffraction
Oxidation of magnetron sputtered La-Si thin films for solide oxide fuel cell electronlytes
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Sputtering; Oxidation; Electrolyte
Raman and 29Si NMR spectroscopic characterization of lanthanum silicate electrolytes: Emphasis on sintering temperature to enhance the oxide-ion conductivity
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Apatite-structure; DEA process; Raman spectroscopy; Solid state 29Si NMR; Sintering temperature; Impedance; SOFC
Electrical properties of La10Si6O27-based oxides
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Oxide ion conductor; Apatite; Solid oxide fuel cell
Low-temperature synthesis and characterization of apatite-type lanthanum silicates
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Apatite; Synthesis; Conductivity; Oxygen mobility
Structural change of oxide-ion-conducting lanthanum silicate on heating from 295 to 1073 K
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Oxide-ion conductor; Apatite-type structure; High-temperature X-ray powder diffraction; Rietveld method; Maximum entropy method
Ionic and electronic conductivities, stability and thermal expansion of La10 − x(Si,Al)6O26 ± δ solid electrolytes
Keywords: لانتانیم سیلیکات; 61.66.Fn; 65.70+y; 66.10.Ed; 72.20.-iApatite; Lanthanum silicate; Ionic conductivity; Electronic transport; Thermal expansion
Structural investigation of La9.33Si6O26- and La9AESi6O26+δ-doped apatites-type lanthanum silicate (AE=Ba, Sr and Ca) by neutron powder diffraction
Keywords: لانتانیم سیلیکات; Apatite; Lanthanum silicate; X-ray diffraction; Neutron diffraction; Nuclear density spread
Structure of oxide ion-conducting lanthanum oxyapatite, La9.33(SiO4)6O2
Keywords: لانتانیم سیلیکات; 61.66.F (crystal structure of inorganic compounds); 61.10.N (crystal structure by X-ray diffraction); 66.30.H (ionic conduction in nonmetals); Lanthanum silicate; Oxide ion conductor; Apatite structure type; Hexagonal channel; Thermal vibration; X-ray dif
High-pressure rare earth silicates: Lanthanum silicate with barium phosphate structure, holmium silicate apatite, and lutetium disilicate type X
Keywords: لانتانیم سیلیکات; Rare earth silicates; High-pressure phases; Lanthanum silicate; Holmium hydroxyapatite; Lutetium disilicate
Oxygen ionic and electronic transport in apatite-type La10−x(Si,Al)6O26±δ
Keywords: لانتانیم سیلیکات; Lanthanum silicate; Apatite; Solid oxide electrolyte; Oxygen ionic conductivity; Electronic transport; Faradaic efficiency; Ion transference number; Thermal expansion; Seebeck coefficient
Interfacial reactions and silicate formation in high surface SiO2 impregnated with La nitrate
Keywords: لانتانیم سیلیکات; Nanostructures; Lanthanum silicate; Electron microscopy; Silica; Impregnation;