Investigation of crystal structure and ionic transport in a scandium-based NASICON material by neutron powder diffraction
Author:
Funder
JCNS
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Reference27 articles.
1. Crystal structures and crystal chemistry in the system Na1+xZr2SixP3−xO12
2. Scandium-Substituted Na3Zr2(SiO4)2(PO4) Prepared by a Solution-Assisted Solid-State Reaction Method as Sodium-Ion Conductors
3. A Na+ Superionic Conductor for Room-Temperature Sodium Batteries
4. A low temperature NaS battery incorporating A soluble S cathode
5. An all-solid state NASICON sodium battery operating at 200 °C
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1. Doping enhanced charge transportation in NASICONs for energy storage;Nano Energy;2024-11
2. Influence of excess sodium and phosphorus on the ionic conductivity of NASICON-structured Na3Zr2(SiO4)2PO4 ceramic solid electrolyte;Journal of Energy Storage;2024-06
3. Synthesis, structure and thermal expansion of new complex phosphates of titanium and metals in the +2 oxidation state;Solid State Sciences;2023-11
4. NaSICON-type solid-state Li+ ion conductors with partial polyanionic substitution of phosphate with silicate;Open Ceramics;2022-12
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