Ceramic Conductors
Material type:
ArticlePublication details: MDPI - Multidisciplinary Digital Publishing Institute 2019Description: 1 electronic resource (184 p.)Content type: - text
- computer
- online resource
- 9783038979562
- 9783038979579
- Reference, Information and Interdisciplinary subjects
- Research and information: general
- CTE
- Cr substitution
- Hebb-Wagner measurements
- La-doped SrTiO3
- Mössbauer
- Ni-Cr-ferrite
- Ostwald ripening
- Solid Oxide Fuel Cells
- TEC
- Wulff shape
- aliovalent substitution
- ball milling
- binary fluorides
- bismuth vanadate
- cation mixing
- ceria
- chemical expansion
- coupled
- current collector
- decoupled ionic transport
- e-beam physical vapor deposition
- electronic conductivity
- high temperature proton conductors
- hydration
- impedance spectroscopy
- impregnation
- ionic conductivity
- lanthanum orthoniobate
- magnetic properties
- metal foam
- molten salt synthesis
- multifoil shape
- nanocrystalline ceramics
- perovskite oxides
- platelet morphology
- proton ceramic fuel cells
- proton conductivity
- protonic conductivity
- protonic conductors
- redox cycle
- relaxation experiments
- samarium-doped ceria (SDC)
- sol-gel
- solid oxide fuel cells (SOFC)
- specific surface area of powders
- structure
- substituted barium indate
- terbium orthoniobate
- thermal expansion
- thermogravimetric analysis
- thin films
- water uptake
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This Special Issue of Crystals contains papers focusing on various properties of conducting ceramics. Multiple aspects of both the research and application of this group of materials have been addressed. Conducting ceramics are the wide group of mostly oxide materials which play crucial roles in various technical applications, especially in the context of the harvesting and storage of energy. Without ion-conducting oxides, such as yttria-stabilized zirconia, doped ceria devices such as solid oxide fuel cells would not exist, not to mention the wide group of other ion conductors which can be applied in batteries or even electrolyzers, besides fuel cells. The works published in this Special Issue tackle experimental results as well as general theoretical trends in the field of ceramic conductors, or electroceramics, as it is often referred to.
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