International Journal of Hydrogen Energy, ISSN 0360-3199, 05/2010, Volume 35, Issue 9, pp. 4258 - 4263
The morphological and electrical properties of yttrium (Y) and indium (In) doped barium cerate perovskites of the form BaIn Y Ce O (with x = 0-0.3) prepared by...
Electrical property | Stability | Barium cerate | Proton conductor | ELECTROCHEMICAL PROPERTIES | TRANSPORT-PROPERTIES | ENERGY & FUELS | BEHAVIOR | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMICAL-STABILITY | CHEMISTRY, PHYSICAL | ENVIRONMENTAL SCIENCES | DOPED BACEO3 | EXPANSION | OXYGEN-ION CONDUCTION | OXIDE FUEL-CELLS | CERAMICS
Electrical property | Stability | Barium cerate | Proton conductor | ELECTROCHEMICAL PROPERTIES | TRANSPORT-PROPERTIES | ENERGY & FUELS | BEHAVIOR | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMICAL-STABILITY | CHEMISTRY, PHYSICAL | ENVIRONMENTAL SCIENCES | DOPED BACEO3 | EXPANSION | OXYGEN-ION CONDUCTION | OXIDE FUEL-CELLS | CERAMICS
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 02/2014, Volume 39, Issue 6, pp. 2685 - 2691
Sm Sr CoO –Ce Sm O (SSC–SDC) composites, which are often used as the cathodes for solid oxide fuel cells (SOFCs) with oxygen-ion conducting electrolytes, have...
Solid oxide fuel cells | Reduced temperature | Electrocatalyst impregnation | Proton conductor | Composite cathode | HIGH-PERFORMANCE | ELECTROCHEMISTRY | ENERGY & FUELS | CHEMISTRY, PHYSICAL | LOW-TEMPERATURE SOFCS | OXYGEN-ION | ELECTROLYTES | Electrodes | Blanks | Nanoparticles | Hydrogen-based energy | Impregnating | Electrolytes | Conductors (devices)
Solid oxide fuel cells | Reduced temperature | Electrocatalyst impregnation | Proton conductor | Composite cathode | HIGH-PERFORMANCE | ELECTROCHEMISTRY | ENERGY & FUELS | CHEMISTRY, PHYSICAL | LOW-TEMPERATURE SOFCS | OXYGEN-ION | ELECTROLYTES | Electrodes | Blanks | Nanoparticles | Hydrogen-based energy | Impregnating | Electrolytes | Conductors (devices)
Journal Article
JOURNAL OF POWER SOURCES, ISSN 0378-7753, 09/2011, Volume 196, Issue 18, pp. 7500 - 7504
Novel proton conductor BaCe0.7In0.2Yb0.1O3-delta (BCIYb) has been successfully synthesized by a modified Pechini method and characterized as electrolyte for...
ELECTROCHEMISTRY | ELECTROCHEMICAL PROPERTIES | CATHODES | ENERGY & FUELS | BEHAVIOR | Conductivity | CHEMICAL-STABILITY | Durability | Proton conductor | BACEO3 | EXPANSION | Performance | OXYGEN-ION CONDUCTION | DOPED BARIUM CERATE | CERAMICS
ELECTROCHEMISTRY | ELECTROCHEMICAL PROPERTIES | CATHODES | ENERGY & FUELS | BEHAVIOR | Conductivity | CHEMICAL-STABILITY | Durability | Proton conductor | BACEO3 | EXPANSION | Performance | OXYGEN-ION CONDUCTION | DOPED BARIUM CERATE | CERAMICS
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2015, Volume 287, pp. 170 - 176
A new type of oxygen ion conductor Gd Ce O (GDC) modified La Sr Co Fe O (LSCF) electrode is developed for proton conducting solid oxide fuel cells (SOFCs). The...
Oxygen ion modification | Cathode material | Proton conducting solid oxide fuel cell | HIGH-PERFORMANCE | ELECTROCHEMISTRY | ELECTROLYTE | ENERGY & FUELS | COMPOSITE CATHODE | TOLERANCE | MEMBRANE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMICAL-STABILITY | CHEMISTRY, PHYSICAL | TEMPERATURE | LA | SINTERABILITY | NEXT-GENERATION | Fuel cell industry | Fuel cells | Electrolytes
Oxygen ion modification | Cathode material | Proton conducting solid oxide fuel cell | HIGH-PERFORMANCE | ELECTROCHEMISTRY | ELECTROLYTE | ENERGY & FUELS | COMPOSITE CATHODE | TOLERANCE | MEMBRANE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMICAL-STABILITY | CHEMISTRY, PHYSICAL | TEMPERATURE | LA | SINTERABILITY | NEXT-GENERATION | Fuel cell industry | Fuel cells | Electrolytes
Journal Article
Applied Physics Letters, ISSN 0003-6951, 10/2018, Volume 113, Issue 16
We experimentally demonstrate non-volatile resistive switching (RS) with a resistance window of ∼10× in oxide ion conductor BiYO3 (BYO) thin films....
Gold | Temperature dependence | Ohmic | Space charge | Silicon substrates | High resistance | Conductors | Conduction model | Pulsed laser deposition | Pulsed lasers | Thermal stability | Switching | Silicon dioxide | Thin films | Platinum | Oxygen ions | Titanium dioxide
Gold | Temperature dependence | Ohmic | Space charge | Silicon substrates | High resistance | Conductors | Conduction model | Pulsed laser deposition | Pulsed lasers | Thermal stability | Switching | Silicon dioxide | Thin films | Platinum | Oxygen ions | Titanium dioxide
Journal Article
Solid State Ionics, ISSN 0167-2738, 10/2012, Volume 225, pp. 304 - 307
Acceptor-doped BaZrO exhibits a high bulk proton conductivity combined with good chemical stability. Yet its application as solid electrolyte is severely...
Intermediate temperature fuel cell | Perovskites | Space charge model | Nonlinear electrical properties | Dopant segregation | PHYSICS, CONDENSED MATTER | OXYGEN-ION CONDUCTORS | STABILITY | TITANATES | CHEMISTRY, PHYSICAL | DOPED BARIUM ZIRCONATE | MICROSTRUCTURES | CONDUCTIVITY | SRTIO3 | IMPEDANCE | NONLINEAR ELECTRICAL-PROPERTIES | CERAMICS | Grain boundaries | Grain size | Depletion | Space charge | Conductors | Mathematical models | Solid electrolytes | Barium zirconates
Intermediate temperature fuel cell | Perovskites | Space charge model | Nonlinear electrical properties | Dopant segregation | PHYSICS, CONDENSED MATTER | OXYGEN-ION CONDUCTORS | STABILITY | TITANATES | CHEMISTRY, PHYSICAL | DOPED BARIUM ZIRCONATE | MICROSTRUCTURES | CONDUCTIVITY | SRTIO3 | IMPEDANCE | NONLINEAR ELECTRICAL-PROPERTIES | CERAMICS | Grain boundaries | Grain size | Depletion | Space charge | Conductors | Mathematical models | Solid electrolytes | Barium zirconates
Journal Article
INORGANIC CHEMISTRY, ISSN 0020-1669, 07/2019, Volume 58, Issue 14, pp. 9460 - 9468
In this work, we have discovered Ca3Ga4O9 as a rare-earth-free oxide-ion conductor by a combined technique of bond valence (BV)-based energy calculations,...
STRUCTURE FAMILY | TEMPERATURE | LUMINESCENCE | STRUCTURE DATABASE ICSD | CRYSTAL-STRUCTURE | ELECTRICAL-CONDUCTIVITY | OXYGEN-ION | DIOXIDE GAS SENSOR | 3-DIMENSIONAL VISUALIZATION | ELECTROLYTES | CHEMISTRY, INORGANIC & NUCLEAR
STRUCTURE FAMILY | TEMPERATURE | LUMINESCENCE | STRUCTURE DATABASE ICSD | CRYSTAL-STRUCTURE | ELECTRICAL-CONDUCTIVITY | OXYGEN-ION | DIOXIDE GAS SENSOR | 3-DIMENSIONAL VISUALIZATION | ELECTROLYTES | CHEMISTRY, INORGANIC & NUCLEAR
Journal Article
Materials, ISSN 1996-1944, 05/2019, Volume 12, Issue 10, p. 1624
The title compounds exhibit a K2NiF4-type layered perovskite structure; they are based on the La1.2Sr0.8InO4+δ oxide, which was found to exhibit excellent...
Layered perovskite | Oxygen vacancies | Solid electrolyte | Oxygen-ion conductor | Activation energy | Oxygen interstitials | Neutron powder diffraction | oxygen interstitials | layered perovskite | activation energy | neutron powder diffraction | oxygen-ion conductor | solid electrolyte | oxygen vacancies
Layered perovskite | Oxygen vacancies | Solid electrolyte | Oxygen-ion conductor | Activation energy | Oxygen interstitials | Neutron powder diffraction | oxygen interstitials | layered perovskite | activation energy | neutron powder diffraction | oxygen-ion conductor | solid electrolyte | oxygen vacancies
Journal Article
Inorganic Chemistry, ISSN 0020-1669, 10/2018, Volume 57, Issue 20, pp. 12811 - 12819
La5.4MoO11.1 proton conductors with different metal doping (Ca2+, Sr2+, Ba2+, Ti4+, Zr4+, and Nb5+ ) have been prepared and structurally and electrically...
NIOBIUM | CONDUCTIVITY | CRYSTAL-STRUCTURE | OXYGEN-ION | LANTHANUM TUNGSTATE | HYDROGEN PERMEATION | DIFFUSION | SEPARATION | OXIDE-ION CONDUCTORS | CHEMISTRY, INORGANIC & NUCLEAR
NIOBIUM | CONDUCTIVITY | CRYSTAL-STRUCTURE | OXYGEN-ION | LANTHANUM TUNGSTATE | HYDROGEN PERMEATION | DIFFUSION | SEPARATION | OXIDE-ION CONDUCTORS | CHEMISTRY, INORGANIC & NUCLEAR
Journal Article
IEEE ELECTRON DEVICE LETTERS, ISSN 0741-3106, 06/2012, Volume 33, Issue 6, pp. 803 - 805
Oxygen ion migration is an important factor in the formation and rupture of a conducting filament to cause resistive switching (RS) behavior. A calcium...
Oxygen ion migration | resistive random access memory (RRAM) | unipolar switching | ZrO2 film | ENGINEERING, ELECTRICAL & ELECTRONIC
Oxygen ion migration | resistive random access memory (RRAM) | unipolar switching | ZrO2 film | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2017, Volume 360, pp. 70 - 79
The characterization of proton conduction leads to controversial data, often resulting from misinterpretation of the experimental measurements. All methods...
Faradaic efficiency | Hydrogen semi-permeation | Oxyapatite | Proton conductor | SOLID-ELECTROLYTE | ELECTROCHEMISTRY | PALLADIUM | ENERGY & FUELS | HIGH-TEMPERATURES | MATERIALS SCIENCE, MULTIDISCIPLINARY | MEMBRANES | CHEMISTRY, PHYSICAL | FUEL-CELLS | OXYGEN-ION | TRANSPORT-NUMBER DETERMINATION | PROTON CONDUCTION | HYDROGEN PERMEATION | CERAMICS | Palladium | Surface active agents | Hydrogen | Analysis | Electric properties | Engineering Sciences | Material chemistry | Chemical Sciences | Materials
Faradaic efficiency | Hydrogen semi-permeation | Oxyapatite | Proton conductor | SOLID-ELECTROLYTE | ELECTROCHEMISTRY | PALLADIUM | ENERGY & FUELS | HIGH-TEMPERATURES | MATERIALS SCIENCE, MULTIDISCIPLINARY | MEMBRANES | CHEMISTRY, PHYSICAL | FUEL-CELLS | OXYGEN-ION | TRANSPORT-NUMBER DETERMINATION | PROTON CONDUCTION | HYDROGEN PERMEATION | CERAMICS | Palladium | Surface active agents | Hydrogen | Analysis | Electric properties | Engineering Sciences | Material chemistry | Chemical Sciences | Materials
Journal Article
IEEE Electron Device Letters, ISSN 0741-3106, 2012, Volume 33, Issue 6, pp. 803 - 805
Journal Article
Ionics, ISSN 0947-7047, 9/2019, Volume 25, Issue 9, pp. 4265 - 4271
The spark plasma sintering and conventional sintering methods were used to prepare the Sr/Mg–codoped Na0.5Bi0.48Sr0.02Ti0.96Mg0.04O2.95 (NBT-SM) compounds. By...
Condensed Matter Physics | Oxygen ionic conductivity | Chemistry | Spark plasma sintering | Energy Storage | Na 0.5 Bi 0.5 TiO 3 | Renewable and Green Energy | Electrochemistry | Optical and Electronic Materials | , | Thermal stability | ELECTROCHEMISTRY | PHYSICS, CONDENSED MATTER | SODIUM | Na0.5Bi0.5TiO3 | ELECTRICAL-CONDUCTIVITY | CHEMISTRY, PHYSICAL | RELAXATION
Condensed Matter Physics | Oxygen ionic conductivity | Chemistry | Spark plasma sintering | Energy Storage | Na 0.5 Bi 0.5 TiO 3 | Renewable and Green Energy | Electrochemistry | Optical and Electronic Materials | , | Thermal stability | ELECTROCHEMISTRY | PHYSICS, CONDENSED MATTER | SODIUM | Na0.5Bi0.5TiO3 | ELECTRICAL-CONDUCTIVITY | CHEMISTRY, PHYSICAL | RELAXATION
Journal Article
MATERIALS, ISSN 1996-1944, 05/2019, Volume 12, Issue 10
The title compounds exhibit a K2NiF4-type layered perovskite structure; they are based on the La1.2Sr0.8InO4+ oxide, which was found to exhibit excellent...
SYSTEM | oxygen interstitials | FUEL-CELL SOFC | MATERIALS SCIENCE, MULTIDISCIPLINARY | layered perovskite | activation energy | neutron powder diffraction | oxygen-ion conductor | solid electrolyte | SOLID ELECTROLYTES | oxygen vacancies
SYSTEM | oxygen interstitials | FUEL-CELL SOFC | MATERIALS SCIENCE, MULTIDISCIPLINARY | layered perovskite | activation energy | neutron powder diffraction | oxygen-ion conductor | solid electrolyte | SOLID ELECTROLYTES | oxygen vacancies
Journal Article
Nature Communications, ISSN 2041-1723, 06/2017, Volume 8, Issue 1, p. 15830
Hydration of oxygen-deficient metal oxides causes filling of oxygen vacancies and formation of hydroxyl groups with interstitial structural protons, rotating...
SRCE0.95YB0.05H0.02O2.985 | ENERGY | TRANSPORT | MOTION | HYDROGEN-BONDED SYSTEM | CONDUCTIVITY | MULTIDISCIPLINARY SCIENCES | HIGH-TEMPERATURE | SOLIDS | DIFFUSION | MODEL | Protons | Oxygen | Crystal lattices | Hydration | Metals | Scattering | Conductivity | Cerium | Oxides | Conductors | Charge transport | High temperature | Carrier transport | Lattice vacancies | Metal oxides | Current carriers | Neutron scattering | Temperature effects | Oxygen ions | Elastic properties | Coupling | Lattice vibration | Stretching | Hydroxyl groups
SRCE0.95YB0.05H0.02O2.985 | ENERGY | TRANSPORT | MOTION | HYDROGEN-BONDED SYSTEM | CONDUCTIVITY | MULTIDISCIPLINARY SCIENCES | HIGH-TEMPERATURE | SOLIDS | DIFFUSION | MODEL | Protons | Oxygen | Crystal lattices | Hydration | Metals | Scattering | Conductivity | Cerium | Oxides | Conductors | Charge transport | High temperature | Carrier transport | Lattice vacancies | Metal oxides | Current carriers | Neutron scattering | Temperature effects | Oxygen ions | Elastic properties | Coupling | Lattice vibration | Stretching | Hydroxyl groups
Journal Article
physica status solidi (a), ISSN 1862-6300, 01/2019, Volume 216, Issue 2, pp. 1800352 - n/a
In this work, structural, electrical, and scaling behavior of Eu, Pr, and Sm co‐doped ceria‐based ionic conductors are reported. The materials are prepared...
scaling | ionic conductivity | Cole–Davidson formalism | co‐doped ceria | relaxation | co-doped ceria | PHYSICS, CONDENSED MATTER | GRAIN-BOUNDARIES | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | ELECTRICAL-CONDUCTIVITY | HIGH-TEMPERATURE | Cole-Davidson formalism | DIELECTRIC-RELAXATION | ELECTROLYTES | HYDROTHERMAL SYNTHESIS | ND3 | CHARGE | Current carriers | Spontaneous combustion | Electrical resistivity | Migration | Dopants | Scaling | Conductors | Oxygen ions | Impedance | Carrier density | Cerium oxides
scaling | ionic conductivity | Cole–Davidson formalism | co‐doped ceria | relaxation | co-doped ceria | PHYSICS, CONDENSED MATTER | GRAIN-BOUNDARIES | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | ELECTRICAL-CONDUCTIVITY | HIGH-TEMPERATURE | Cole-Davidson formalism | DIELECTRIC-RELAXATION | ELECTROLYTES | HYDROTHERMAL SYNTHESIS | ND3 | CHARGE | Current carriers | Spontaneous combustion | Electrical resistivity | Migration | Dopants | Scaling | Conductors | Oxygen ions | Impedance | Carrier density | Cerium oxides
Journal Article
Journal of the Ceramic Society of Japan, ISSN 1882-0743, 2017, Volume 125, Issue 7, pp. 547 - 551
The frequency response of the permittivity of oxides is described by the dielectric dispersion of four contributions: the interfacial, dipole, ionic, and...
Microwave dielectric measurement | Polarization | Ferroelectrics | Oxygen ion conductors | Broadband spectroscopy | THIN-FILMS | SOFT-MODE SPECTROSCOPY | BATIO3 | CONSTANT | RELAXATION | BARIUM-TITANATE | MATERIALS SCIENCE, CERAMICS | PHASE | MICROWAVE DEVICES | CONDUCTIVITY
Microwave dielectric measurement | Polarization | Ferroelectrics | Oxygen ion conductors | Broadband spectroscopy | THIN-FILMS | SOFT-MODE SPECTROSCOPY | BATIO3 | CONSTANT | RELAXATION | BARIUM-TITANATE | MATERIALS SCIENCE, CERAMICS | PHASE | MICROWAVE DEVICES | CONDUCTIVITY
Journal Article
IEEE Electron Device Letters, ISSN 0741-3106, 06/2012, Volume 33, Issue 6, pp. 803 - 805
Oxygen ion migration is an important factor in the formation and rupture of a conducting filament to cause resistive switching (RS) behavior. A calcium...
Buffer layers | Electrodes | Oxygen ion migration | hbox{ZrO}_{2} film | Calcium | Switches | Conductivity | Ions | Ceramics | resistive random access memory (RRAM) | unipolar switching
Buffer layers | Electrodes | Oxygen ion migration | hbox{ZrO}_{2} film | Calcium | Switches | Conductivity | Ions | Ceramics | resistive random access memory (RRAM) | unipolar switching
Journal Article
Journal of Applied Physics, ISSN 0021-8979, 01/2018, Volume 123, Issue 4
We report oxygen ion transport in La2−xErxMo2O9 (0.05 ≤ x ≤ 0.25) oxide ion conductors. We have measured conductivity and dielectric spectra at different...
Raman spectra | Composition | Dependence | Spatial analysis | Ion transport | Lattice sites | X-ray diffraction | Conductors | Oxygen ions
Raman spectra | Composition | Dependence | Spatial analysis | Ion transport | Lattice sites | X-ray diffraction | Conductors | Oxygen ions
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 2012, Volume 37, Issue 1, pp. 548 - 554
For solid oxide fuel cells with proton-conducting electrolytes, oxygen is reduced as well as water is formed at the so-called H-TPB where proton, oxygen and...
Solid oxide fuel cells | Oxygen-ion conductor | Composite cathodes | Reaction model | Proton electrolyte | ELECTROCHEMISTRY | CARBONATE COPRECIPITATION | YTTRIA-STABILIZED ZIRCONIA | ENERGY & FUELS | PERFORMANCE | CHEMISTRY, PHYSICAL | Fuel cell industry | Electrolytes | Fuel cells
Solid oxide fuel cells | Oxygen-ion conductor | Composite cathodes | Reaction model | Proton electrolyte | ELECTROCHEMISTRY | CARBONATE COPRECIPITATION | YTTRIA-STABILIZED ZIRCONIA | ENERGY & FUELS | PERFORMANCE | CHEMISTRY, PHYSICAL | Fuel cell industry | Electrolytes | Fuel cells
Journal Article
No results were found for your search.
Cannot display more than 1000 results, please narrow the terms of your search.