Ceramic Conductors

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 var...

Full description

Saved in:
Bibliographic Details
Main Author: Gazda, Maria (auth)
Other Authors: Mielewczyk-Gry?, Aleksandra (auth)
Format: Book Chapter
Published: MDPI - Multidisciplinary Digital Publishing Institute 2019
Subjects:
Online Access:Get Fullteks
DOAB: description of the publication
Tags: Add Tag
No Tags, Be the first to tag this record!
LEADER 03635naaaa2200877uu 4500
001 doab_20_500_12854_42905
005 20210211
020 |a books978-3-03897-957-9 
020 |a 9783038979562 
020 |a 9783038979579 
024 7 |a 10.3390/books978-3-03897-957-9  |c doi 
041 0 |a English 
042 |a dc 
100 1 |a Gazda, Maria  |4 auth 
700 1 |a Mielewczyk-Gry?, Aleksandra  |4 auth 
245 1 0 |a Ceramic Conductors 
260 |b MDPI - Multidisciplinary Digital Publishing Institute  |c 2019 
300 |a 1 electronic resource (184 p.) 
506 0 |a Open Access  |2 star  |f Unrestricted online access 
520 |a 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. 
540 |a Creative Commons  |f https://creativecommons.org/licenses/by-nc-nd/4.0/  |2 cc  |4 https://creativecommons.org/licenses/by-nc-nd/4.0/ 
546 |a English 
653 |a n/a 
653 |a ionic conductivity 
653 |a cation mixing 
653 |a aliovalent substitution 
653 |a substituted barium indate 
653 |a thermal expansion 
653 |a impregnation 
653 |a Cr substitution 
653 |a chemical expansion 
653 |a ball milling 
653 |a lanthanum orthoniobate 
653 |a perovskite oxides 
653 |a thermogravimetric analysis 
653 |a Hebb-Wagner measurements 
653 |a samarium-doped ceria (SDC) 
653 |a impedance spectroscopy 
653 |a hydration 
653 |a nanocrystalline ceramics 
653 |a binary fluorides 
653 |a Ni-Cr-ferrite 
653 |a solid oxide fuel cells (SOFC) 
653 |a Mössbauer 
653 |a ceria 
653 |a current collector 
653 |a multifoil shape 
653 |a specific surface area of powders 
653 |a sol-gel 
653 |a molten salt synthesis 
653 |a Wulff shape 
653 |a relaxation experiments 
653 |a Ostwald ripening 
653 |a Solid Oxide Fuel Cells 
653 |a electronic conductivity 
653 |a proton ceramic fuel cells 
653 |a terbium orthoniobate 
653 |a water uptake 
653 |a high temperature proton conductors 
653 |a redox cycle 
653 |a metal foam 
653 |a protonic conductors 
653 |a protonic conductivity 
653 |a proton conductivity 
653 |a structure 
653 |a thin films 
653 |a e-beam physical vapor deposition 
653 |a TEC 
653 |a magnetic properties 
653 |a CTE 
653 |a coupled/decoupled ionic transport 
653 |a platelet morphology 
653 |a bismuth vanadate 
653 |a La-doped SrTiO3 
856 4 0 |a www.oapen.org  |u https://mdpi.com/books/pdfview/book/1310  |7 0  |z Get Fullteks 
856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/42905  |7 0  |z DOAB: description of the publication