Publication | Open Access
Tin-based ionic chaperone phases to improve low temperature molten sodium–NaSICON interfaces
42
Citations
28
References
2020
Year
Novel Nasn IntermetallicEngineeringElectrode-electrolyte InterfaceSolid-state ChemistryChemistryLow TemperatureChemical EngineeringInterface ChemistryNasicon Ceramic ElectrolyteInterfacial ChemistryElectrochemical InterfaceMaterials ScienceSolid-state IonicSurface ElectrochemistryMolten SodiumElectrochemistrySodium–nasicon InterfacesNatural SciencesSurface ScienceApplied PhysicsIonic ConductorElectrochemical Surface Science
A novel NaSn intermetallic improves critical electrochemical interfaces between molten sodium and NaSICON ceramic electrolyte at low temperatures (110 °C).
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