Magnetic structures of NaFePO4 maricite and triphylite polymorphs for sodium-ion batteries.
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Summary
The magnetic structure and properties of polycrystalline NaFePO4 polymorphs, maricite and triphylite, both derived from the olivine structure type, have been investigated using magnetic susceptibility, heat capacity, and low-temperature neutron powder diffraction.
- Type
- article
- Published
- 2013-07-11
- Cited by
- 138
- References
- 44
- OpenAlex
- https://openalex.org/W1964465939
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41079334
Keywords
Chemistry, Orthorhombic crystal system, Crystallography, Octahedron, Antiferromagnetism
References
- New iron-based mixed-polyanion cathodes for lithium and sodium rechargeable batteries: combined first principles calculations and experimental study.
- Spin-waves in Antiferromagnetic Single-crystal LiFePO4
- Magnetoelectric properties of LiCoPO 4 and LiNiPO 4
- Neutron Scattering Studies of LiCoPO4 & LiMnPO4
- Crystal Chemistry of the Olivine-Type Li ( Mn y Fe1 − y ) PO 4 and ( Mn y Fe1 − y ) PO 4 as Possible 4 V Cathode Materials for Lithium Batteries
- Structural, transport, and electrochemical investigation of novel AMSO4F (A = Na, Li; M = Fe, Co, Ni, Mn) metal fluorosulphates prepared using low temperature synthesis routes.
- Electrochemical intercalation activity of layered NaCrO2 vs. LiCrO2
- Challenges in the development of advanced Li-ion batteries: a review
- Magnetic properties of LiCoPO4 and LiNiPO4
- Magnetic field induced spin reorientation in the strongly anisotropic antiferromagnetic crystal LiCoPO4
- A multifunctional 3.5 V iron-based phosphate cathode for rechargeable batteries.
- High-field magnetic phase transitions and spin excitations in magnetoelectric LiNiPO4
- High‐Voltage Pyrophosphate Cathodes
- Na-ion batteries, recent advances and present challenges to become low cost energy storage systems
- Magnetic Structures of the Triphylite LiFePO4 and of Its Delithiated Form FePO4
- Recent advances in the research of polyanion-type cathode materials for Li-ion batteries
- VESTA 3 for three-dimensional visualization of crystal, volumetric and morphology data
- Field-induced magnetic phases and electric polarization in LiNiPO4
- Direct cation- -cation interactions in several oxides
- Electrochemical intercalation of sodium in NaxCoO2 bronzes
Cited by
- The transformation from amorphous iron phosphate to sodium iron phosphate in sodium-ion batteries.
- Synthesis, and crystal and electronic structure of sodium metal phosphate for use as a hybrid capacitor in non-aqueous electrolyte.
- Na3.12Fe2.44(P2O7)2/multi-walled carbon nanotube composite as a cathode material for sodium-ion batteries
- Porous graphene to encapsulate Na(6.24)Fe(4.88)(P2O7)4 as composite cathode materials for Na-ion batteries.
- Na3V2(PO4)3@C core–shell nanocomposites for rechargeable sodium-ion batteries
- On Why the Two Polymorphs of NaFePO4 Exhibit Widely Different Magnetic Structures: Density Functional Analysis.
- Structural, magnetic, and diffusive nature of olivine-type NaxFePO4
- Research development on sodium-ion batteries.
- Synthesis, structural, magnetic and sodium deinsertion/insertion properties of a sodium ferrous metaphosphate, NaFe(PO3)3
- Recent research progress on iron- and manganese-based positive electrode materials for rechargeable sodium batteries
- Single crystal and magnetic structures of maricite-type AgMnVO4
- Olivine LiFePO4: the remaining challenges for future energy storage
- Reduced graphene oxide and Fe2(MoO4)3 composite for sodium-ion batteries cathode with improved performance
- The relation between the structure and electrochemical performance of sodiated iron phosphate in sodium-ion batteries
- Polaron Mobility and Disordering of the Sodium Sublattice in Triphylite-NaxFePO4
- Synthesis, structural and electrochemical properties of sodium nickel phosphate for energy storage devices.
- Polyanion-type cathode materials for sodium-ion batteries.
- Recent advances in titanium-based electrode materials for stationary sodium-ion batteries
- Sodiation vs. Lithiation of FePO4: A comparative kinetic study
- Exploration of Na7Fe4.5(P2O7)4 as a cathode material for sodium-ion batteries
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