Publication | Closed Access
Phase transitions in tantalum-modified silver niobate ceramics for high power energy storage
235
Citations
49
References
2018
Year
Materials SciencePhase TransitionsMaterial AnalysisEngineeringImportant MaterialCeramic MaterialEnergy CeramicApplied PhysicsSuperconductivityCondensed Matter PhysicsModel SystemEnergy StorageSolid-state ChemistryChemistry
Ag(Nb<sub>0.8</sub>Ta<sub>0.2</sub>)O<sub>3</sub> is used here as a model system to shed light on the nature of the low temperature phase behavior of the unsubstituted parent compound AgNbO<sub>3</sub>, which is an important material for high-power energy storage applications.
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