Electrical properties of glasses in the Na2O–MoO3–P2O5 system
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference23 articles.
1. Glass formation and structure in the system Cu2OP2O5MoO3
2. Characterization studies of molybdophosphate glasses and a model of structural defects
3. Effects of differing ratios of network modifier (Ag2O) to network formers (MoO3 + V2O5) and dopant salt (AgI) concentrations in silver-based superionic glassy compounds
4. Formation region and characterization of superionic conducting glasses in the systems AgIAg2OMxOy
5. The elastic constants and structure of the vitreous system Mo-P-O
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1. Li2O–V2O5–MoO3–Fe2O3 amorphous cathode material for lithium-ion batteries based on coordinated multi-electron effect and stable network structure;Ceramics International;2024-01
2. Amorphous Li2O–LiI–MoO3 solid electrolytes: mechanochemical synthesis and application to all-solid-state batteries;Materials Advances;2024
3. Enhancement of electrical conductivity associated with non-bridged oxygen defects in molybdenum phosphate oxide glass via doping of SrO;Scientific Reports;2023-10-26
4. Investigation of structural, thermal, and electrical characteristics of zirconium-doped lithium-phosphate glasses;Heliyon;2023-09
5. Chemical models of molybdenum-calcium phosphate glasses;Journal of Non-Crystalline Solids;2023-05
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