Synthesis and Na+ conduction properties of Nasicon-type glass–ceramics in the system Na2O–Y2O3–R2O3–P2O5–SiO2 (R = rare earth) and effect of Y substitution
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Reference16 articles.
1. Ionic conductivity in sodium yttrium silicon oxide (Na5YSi4O12)-type silicates
2. The sodium conductivity paths in the superionic conductors Na5RESi4O12
3. New fast sodium-ion conducting glass-ceramics of silicophosphates: Crystallization, microstructure and conduction properties
4. Na+ superionic conductors of glass-ceramics in the system Na2O$z.sbnd;Re2O3$z.sbnd;P2O5$z.sbnd;SiO2(Re=rare-earth elements)
5. Synthesis and ionic conduction of C3A-type nasicon Na3+3x−yY1−xSi3−yPyO9
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1. CO-SUBSTITUTION EFFECTS OF Eu3+/Dy3+ ON Na+ CONDUCTION PROPERTIES OF Na5YSi4O12-TYPE PHOSPHOSILICATES GLASS-CERAMICS OF Na4Y0.6-2zEuzDyzP0.2Si2.8O9;Phosphorus Research Bulletin;2024
2. Chemically Driven Ion Exchanging Synthesis of Na5YSi4O12-Based Glass-Ceramic Proton Conductors;Materials;2023-03-07
3. Progress in Sodium Silicates for All‐Solid‐State Sodium Batteries—a Review;Energy Technology;2023-01-26
4. Fast potassium ion conducting glass-ceramics of Na5YSi4O12-type Na4-K Y0.6P0.2Si2.8O9;Materials Letters;2022-04
5. Microstructural effects on sodium ion conduction properties of grains and grain boundaries of Na5YSi4O12-type silicophosphate glass-ceramics;Journal of the Ceramic Society of Japan;2022-01-01
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