X-ray characterization of the new nasicon compositions Na3Zr2−x/4Si2−xP1+xO12 with x=0.333, 0.667, 1.000, 1.333, 1.667
Explore this paper's citation graph
- Type
- article
- Published
- 1997-09-01
- Cited by
- 9
- References
- 18
- OpenAlex
- https://openalex.org/W1985545377
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93535381
Keywords
Fast ion conductor, Octahedron, Ionic conductivity, Materials science, Characterization (materials science)
References
- La diffrazione dei raggi-X dai materiali policristallini
- Gel technology in ceramics, glass-ceramics and ceramic-ceramic composites☆
- Comparison of different synthesis methods for nasicon ceramics
- The crystal structure of a nonstoichiometric NASICON
- Performance characteristics of sodium super ionic conductor prepared by the sol-gel route for sodium ion sensors
- Composition and conduction mechanism of the NASICON structure X-ray diffraction study on two crystals at different temperatures
- Well densified nasicon type ceramics, elaborated using sol-gel process and sintering at low temperatures
- A time of flight neutron powder rietveld refinement study at elevated temperature on a monoclinic near-stoichiometric NASICON
- New X-ray powder diffraction data for Fe, B substituted Rb-leucites (RbFeSi2O6 and RbBSi2O6)
- The preparation and characterization of dense, highly conductive Na5GdSi4O12 nasicon (NGS)
- Nasicon formation by chemical polymerization
- Phase transformation in Na1+xSixZr2P3−xO12 compounds
- Effect of the substitution of boron for aluminium in the β-eucryptite LiAlSiO4 structure
- Sol-gel routes leading to nasicon ceramics
- High-quartz solid-solution phases from xerogels with composition 2MgO.2Al2O3.5SiO2 (μ-cordierite) and Li2O.Al2O3.nSiO2 (n = 2 to 4) (β-eucryptite): Characterization by XRD, FTIR and surface measurements
- Synthesis of sodium dizirconium triphosphate from α-zirconium phosphate☆
- Crystal structures and crystal chemistry in the system Na1+xZr2SixP3−xO12☆
Cited by
- Crystal structure and electric conductivity of the NASICON-related solid solution NaTi2P3−XAsXO3 synthesized hydrothermally
- Conductivity Measurements on Nasicon and Nasicon-modified materials
- Electrical properties of sol–gel processed NASICON having new compositions
- Powder diffraction study of arsenic-substituted nasicon structures MeZr2As(3−x)PxO12 (Me=Na+, K+)
- Radioluminescence investigation of Nasicon materials
- Modeling Ionic Conductivity in Nasicon Structures
- Study of defects inZr lacunar Nasicon crystals
- Phase-field determination of NaSICON materials in the quaternary system Na2O-P2O5-SiO2-ZrO2: II. Glass-ceramics and the phantom of excessive vacancy formation
Related papers
- Conductivity Measurements on Nasicon and Nasicon-modified materials
- A novel NASICON-based glass-ceramic composite electrolyte with enhanced Na-ion conductivity
- Ionic conductivity of the Ag1+xTi2−xScx(PO4)3 solid solution
- Na3Zr2(SiO4)2PO4 NASICON-type solid electrolyte: Influence of milling duration on microstructure and ionic conductivity mechanism
- Improving ionic conductivity of Nasicon (Na3Zr2Si2PO12) at intermediate temperatures by modifying phase transition behavior
- High ionic conducting NaSICON enabled by mechanical activation enhanced reaction
- Effect on ionic conductivity of Na3+xZr2-xMxSi2PO12 (M=Y, La) by doping rare-earth elements
- Design principles for NASICON super-ionic conductors
- Enhancing purity and ionic conductivity of NASICON-typed Li1.3Al0.3Ti1.7(PO4)3 solid electrolyte