Keywords: E. سلول های سوخت; A. Sintering; C. Electrical properties; D. CeO2; E. Fuel cells;
مقالات ISI E. سلول های سوخت (ترجمه نشده)
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Keywords: E. سلول های سوخت; A. Sintering; C. Electrical properties; D. CeO2; E. Fuel cells;
Keywords: E. سلول های سوخت; A. Suspension; A. Tape casting; D. ZrO2; E. Fuel cells;
Keywords: E. سلول های سوخت; A. Films; B. Microstructure; D. Perovskites; E. Fuel cells;
Reduction kinetics of undoped and aluminum titanate (Al2TiO5) doped NiO-YSZ solid oxide fuel cell anodes
Keywords: E. سلول های سوخت; A. Powders: solid state reaction; B. Composites; D. Al2TiO5; E. Fuel cells; Kinetics;
Liquid-phase synthesis of SrCo0.9Nb0.1O3-δ cathode material for proton-conducting solid oxide fuel cells
Keywords: E. سلول های سوخت; A. Powders: chemical preparation; A. Sintering; C. Electrical conductivity; E. Fuel cells;
Enhanced ionic conductivity of scandia-ceria-stabilized-zirconia (10Sc1CeSZ) electrolyte synthesized by the microwave-assisted glycine nitrate process
Keywords: E. سلول های سوخت; A. Microwave processing; A. Sintering; C. Ionic conductivity; E. Fuel cells;
Proton conducting solid oxide fuel cells with chemically stable BaZr0.75Y0.2Pr0.05O3-δ electrolyte
Keywords: E. سلول های سوخت; A. Sintering; C. Electrical properties; D. Perovskites; E. Fuel cells;
Ce0.80Sm0.10Ba0.05Er0.05O2-δ multi-doped ceria electrolyte for intermediate temperature solid oxide fuel cells
Keywords: E. سلول های سوخت; A. Sintering; C. Ionic conductivity; D. Alkaline earth oxides; E. Fuel cells;
Enhancement of the interfacial polarization resistance of La0.6Sr0.4Co0.2Fe0.8O3-δ cathode by microwave-assisted combustion method
Keywords: E. سلول های سوخت; A. Microwave processing; B. X-ray methods; C. Electrical properties; E. Fuel cells;
Anode-supported SOFCs based on Sm0.2Ce0.8O2−δ electrolyte thin-films fabricated by co-pressing using microwave combustion synthesized powders
Keywords: E. سلول های سوخت; A. Films; D. CeO2; E. Fuel cells; Microwave combustion
Evaluation of A-site deficient Sr1−xSc0.175Nb0.025Co0.8O3−δ (x=0, 0.02, 0.05 and 0.1) perovskite cathodes for intermediate-temperature solid oxide fuel cells
Keywords: E. سلول های سوخت; A. Powders: solid state reaction; E. Fuel cells; E. Electrodes
Performance of yttria-stabilized zirconia fuel cell using H2-CO2 gas system and CO-O2 gas system
Keywords: E. سلول های سوخت; C. Electrical properties; D. ZrO2; E. Fuel cells;
Transport properties of BaZr0.5Ce0.3Y0.2O3−δ proton conductor prepared by spark plasma sintering
Keywords: E. سلول های سوخت; A. Sintering; B. Grain size; C. Ionic conductivity; E. Fuel cells
Phase composition, densification and electrical conductivity of La0.9Sr0.1Ga0.8Mg0.2O3−δ consolidated by the two-stage sintering method
Keywords: E. سلول های سوخت; A. Sintering; C. Electrical conductivity; D. Perovskites; E. Fuel cells
Characterization of IT-SOFC non-symmetrical anode sintered through conventional furnace and microwave
Keywords: E. سلول های سوخت; A. Microwave processing; A. Sintering; C. Electrical conductivity; E. Fuel cells
Fe-doped YSZ electrolyte for the fabrication of metal supported-SOFC by co-sintering
Keywords: E. سلول های سوخت; A. Sintering; D. ZrO2; E. Fuel Cells; Fe dopant
Co/CeO2-decorated carbon nanofibers as effective non-precious electro-catalyst for fuel cells application in alkaline medium
Keywords: E. سلول های سوخت; E. Fuel cells; Non-precious catalyst; Electrospinning; decorated carbon nanofibers; Methanol electro-oxidation
Protective coatings for AISI 430 stainless steel at high temperatures using perovskite oxides La0.6Sr0.4CoO3 on spinel type oxide NiFe2O4
Keywords: E. سلول های سوخت; D. Spinel; D. Perovskites; E. Fuel Cells
Effect of Bi2O3 on the electrochemical performance of LaBaCo2O5+δ cathode for intermediate-temperature solid oxide fuel cells
Keywords: E. سلول های سوخت; A. Mixing; B. Microstructure; C. Impedance; E. Fuel cells
Thermal and structural study of BIVOX undoped and doped with La in various atmosphere toward applications in IT-SOFC
Keywords: E. سلول های سوخت; E. Fuel cells; BILAVOX; Solid electrolyte; Thermodynamic stability; IT-SOFC;
Enhanced ionic conductivity of co-doped ceria solid solutions and applications in IT-SOFCs
Keywords: E. سلول های سوخت; B. CeO2; C. Impedance spectroscopy; C. Ionic conductivity; E. Fuel cells
Electrochemical properties of Sr1âxCexMnO3 (0.1â¤xâ¤0.4) - GDC composite cathodes for IT-SOFCs
Keywords: E. سلول های سوخت; C. Impedance; D. Perovskites; E. Electrodes; E. Fuel cells;
Effects of ethyl cellulose polymers on rheological properties of (La,Sr)(Ti,Fe)O3-terpineol pastes for screen printing
Keywords: E. سلول های سوخت; A. Suspensions; D. Perovskites; E. Fuel cells; Rheology
Effects of Gd and Sr co-doping in CeO2 for electrolyte application in solid oxide fuel cell (SOFC)
Keywords: E. سلول های سوخت; A. Sintering; A. Powders-Chemical preparation; C. Electrical conductivity; D. CeO2; E. Fuel cells;
Fabrication of thin-film gadolinia-doped ceria (GDC) interdiffusion barrier layers for intermediate-temperature solid oxide fuel cells (IT-SOFCs) by chemical solution deposition (CSD)
Keywords: E. سلول های سوخت; A. Films; C. Electrical properties; E. Fuel cells; Microstructure; Gadolinium-doped ceria (GDC)
Effect of rare-earth ions doped in BaCeO3 on chemical stability, mechanical properties, and conductivity properties
Keywords: E. سلول های سوخت; A. Powders: solid state reaction; C. Electrical conductivity; C. Mechanical properties; E. Fuel cells
Effect of CuO doping on sinterability, mechanical and electrical properties of Sm-doped CeO2 ceramic thick membrane solid electrolytes
Keywords: E. سلول های سوخت; C. Electrical conductivity; C. Mechanical properties; D. CeO2; E. Fuel cells; Sinterability-promoting additive;
Ni-CGO cermet anodes from nanocomposite powders: Microstructural and electrochemical assessment
Keywords: E. سلول های سوخت; B. Composites; C. Electrical properties; E. Fuel cells; Ni-CGO anodes;
Electrical properties of multidoped ceria
Keywords: E. سلول های سوخت; A. Sintering; C. Ionic conductivity; D. CeO2; E. Fuel cells;
Co-precipitation synthesis and AC conductivity behavior of gadolinium-doped ceria
Keywords: E. سلول های سوخت; A. Powders: chemical preparation; C. Ionic conductivity; D. CeO2; E. Fuel cells;
Ionic conductivity of apatite-type solid electrolyte ceramics Ca2âxBaxLa4Bi4(SiO4)6O2 (0â¤xâ¤2)
Keywords: E. سلول های سوخت; A. Powders: chemical preparation; C. Ionic conductivity; D. Apatite; E. Fuel cells;
Microstructure and ionic conductivity properties of gadolinia doped ceria (GdxCe1âxO2âx/2) electrolytes for intermediate temperature SOFCs prepared by the polyol method
Keywords: E. سلول های سوخت; C. Ionic conductivity; E. Fuel cells; Polyol method; Doped-CeO2;
Electrical characterization of multidoped ceria ceramics
Keywords: E. سلول های سوخت; A. Sintering; C. Ionic conductivity; D. CeO2; E. Fuel cells;
Chemical stability and electrical properties of Nb doped BaCe0.9Y0.1O3−δ as a high temperature proton conducting electrolyte for IT-SOFC
Keywords: E. سلول های سوخت; C. Ionic conductivity; D. Perovskites; E. Fuel cells
Synthesis and characterization of Gd0.1Ce0.9O1.95 nanopowder via an acetic–acrylicmethod
Keywords: E. سلول های سوخت; C. Ionic conductivity; E. Fuel cells; Acetic–acrylic synthesis; Gadolinium doped ceria
Effect of the compression molding parameters on the in-plane and through-plane conductivity of carbon nanotubes/graphite/epoxy nanocomposites as bipolar plate material for a polymer electrolyte membrane fuel cell
Keywords: E. سلول های سوخت; C. Electrical conductivity; B. Nanocomposites; E. Fuel cells
Conductivity of Co and Ni doped lanthanum-gallate synthesized by citrate sol–gel method
Keywords: E. سلول های سوخت; A. Sol–gel processes; C. Ionic conductivity; D. Perovskites; E. Fuel cells
Characterization of La0.58Sr0.4Co0.2Fe0.8O3−δ–Ce0.8Gd0.2O2 composite cathode for intermediate temperature solid oxide fuel cells
Keywords: E. سلول های سوخت; B. Composites; C. Electrical conductivity; C. Thermal expansion; E. Fuel cells
Effect of various pore formers on the microstructural development of tape-cast porous ceramics
Keywords: E. سلول های سوخت; A. Tape casting; B. Porosity; E. Fuel cells; Pore former
The stability of LiAlO2 powders and electrolyte matrices in molten carbonate fuel cell environment
Keywords: E. سلول های سوخت; C. Strength; E. Fuel cells; LiAlO2; Phase transition
LaBaCuFeO5+δ–Ce0.8Sm0.2O1.9 as composite cathode for solid oxide fuel cells
Keywords: E. سلول های سوخت; B. Composites; C. Thermal expansion; D. Perovskites; E. Fuel cells
Evaluation of GdBaCuCo0.5Fe0.5O5+δ as cathode material for intermediate temperature solid oxide fuel cells
Keywords: E. سلول های سوخت; B. Composites; C. Impedance; D. Perovskites; E. Fuel cells
Structure and thermal properties of La0.6Sr0.4Co0.2Fe0.8O3−δ–SDC carbonate composite cathodes for intermediate- to low-temperature solid oxide fuel cells
Keywords: E. سلول های سوخت; A. Calcination; B. Composites; C. Thermal expansion; E. Fuel cells
Electrochemical characterization of gradient Sm0.5Sr0.5CoO3−δ cathodes on Ce0.8Sm0.2O1.9 electrolytes for solid oxide fuel cells
Keywords: E. سلول های سوخت; A. Powder: solid state reaction; C. Impedance; D. Perovskites; E. Electrodes; E. Fuel cells
Compaction pressure effect on microstructure and electrochemical performance of GdBaCo2O5+δ cathode for IT-SOFCs
Keywords: E. سلول های سوخت; A. Pressing; E. Fuel cells; Cathode; Microstructure
Electrolyte materials for solid oxide fuel cells derived from metal complexes: Gadolinia-doped ceria
Keywords: E. سلول های سوخت; A. Powders: chemical preparation; C. Ionic conductivity; D. CeO2; E. Fuel cells
Electrical properties of (La0.9Ca0.1)(Co1−xNix)O3−δ cathode materials for SOFCs
Keywords: E. سلول های سوخت; A. Powders: solid state reaction; C. Electrical conductivity; D. Perovskites; E. Fuel cells; E. Electrodes
A bi-layer cathode based on lanthanum based cobalt- and iron-containing perovskite and gadolinium doped ceria for thin yttria stabilized zirconia electrolyte solid oxide fuel cells
Keywords: E. سلول های سوخت; E. Fuel cells; Electrochemistry; Electrical conductivities; Oxide
Oxy-apatite reaction sintering of colloidal and classic ceramic processed powders
Keywords: E. سلول های سوخت; A. Suspensions; A. Powders: solid state reaction; C. Electrical conductivity; D. Apatite; E. Fuel cells