Synthesis, redox potential evaluation and electrochemical characteristics of NASICON-related-3D framework compounds
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- Type
- article
- Published
- 1996-11-01
- Cited by
- 250
- References
- 15
- OpenAlex
- https://openalex.org/W2025884482
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:95195985
Keywords
Redox, Electrochemistry, Monoclinic crystal system, Fast ion conductor, Chemistry
References
- Proceedings of the Symposium on New Sealed Rechargeable Batteries and Supercapacitors
- Electrochemistry of Manganese Dioxide in Lithium Nonaqueous Cell
- Lithium insertion into Fe2(SO4)3 frameworks
- Synthesis and structural characterization of the normal spinel Li[Ni2]O4
- Lithium insertion into Fe2(MO4)3 frameworks: Comparison of M = W with M = Mo
- The Li1+xMn2O4/C rocking-chair system: a review
- The chemical short circuit method. An improvement in the intercalation-deintercalation techniques
- LixCoO2 (0<x<-1): A new cathode material for batteries of high energy density
- Dimorphism, phase transitions, and transport properties in LiZr2(PO4)3
- Electrochemical extraction of lithium from LiMn2O4
- Thermal stability of LixCoO2, LixNiO2 and λ-MnO2 and consequences for the safety of Li-ion cells
- Fast Na+-ion transport in skeleton structures
- Superionic conductors Li3M2(PO4)3 (M==Fe, Sc, Cr): Synthesis, structure and electrophysical properties
- Verfeinerung der Kristallstruktur des Grossulars mit Neutronen- und Röntgenstrahlbeugung
- Handbook of toxic and hazardous chemicals and carcinogens
- Handbook of Toxic and Hazardous Chemicals and Carcinogens
Cited by
- 3D Proton Transfer Augments Bio‐Photocurrent Generation
- Nanostrucured Lithium Iron Phosphate As Cathode Material For Lithium Ion-Batteries
- Isomorphism in Crystalline Phosphates of the NaZr2(PO4)3 Structural Type and Radiochemical Problems
- Reversible transformation from amorphouse Na3Fe3(SO4)2(OH)6 to crystallized NaFe3(SO4)2(OH)6 Jarosite-type hydroxysulfate
- An improvement in the ionic conductivity and electrochemical characteristics of LiFePO4 by heterogeneous doping with NASICON-type phosphate
- Implementations of electric vehicle system based on solar energy in Singapore assessment of lithium ion batteries for automobiles
- A Reversible Lithium Intercalation Process in an ReO3 Type Structure PNb9 O 25
- Synthesis and Characterization of Amorphous 3Fe2 O 3 ⋅ 2 P 2 O 5 ⋅ 10 H 2 O and Its Electrode Performance in Lithium Batteries
- Characterization of LiMxFe1–xPO4 (M = Mg, Zr, Ti) Cathode Materials Prepared by the Sol-Gel Method
- Synthesis, characterization, and electrochemical properties of Li2Mn1-xFex(PO3)4 cathode material for lithium-ion batteries
- Characterization of Lithium Insertion into NASICON-Type Li1 + x Ti2 − x Al x ( PO4 ) 3 and Its Electrochemical Behavior
- Synthesis and Characterization of the LiMnBO3-LiCoBO3 Solid Solution and Its Use as a Lithium-Ion Cathode Material.
- Composite cathode material β-LiVOPO4/LaPO4 with enhanced electrochemical properties for lithium ion batteries
- Synthesis and crystal structure of novel complex phosphate Li5Cu2Al(PO4)4
- Electrochemical activity of rock-salt-structured LiFeO2/Li4/3Ti2/3O2 nanocomposites in lithium cells
- Performance characteristics of lithium vanadium phosphate as a cathode material for lithium-ion batteries
- Challenges in the synthesis of high voltage electrode materials for lithium-ion batteries: a review on LiNiPO4
- Li2NaV2(PO4)3: A 3.7 V Lithium-Insertion Cathode with the Rhombohedral NASICON Structure
- Influence of composition modification on Ca0.5−xMgxTi2(PO4)3 (0.0≤x≤0.5) nanoparticles as electrodes for lithium batteries
- Relating voltage and thermal safety in Li-ion battery cathodes: a high-throughput computational study.
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