P2-type Na(x)[Fe(1/2)Mn(1/2)]O2 made from earth-abundant elements for rechargeable Na batteries.
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Summary
A new electrode material, P2-Na(2/3)[Fe(1/2)Mn( 1/2)]O(2), that delivers 190 mAh g(-1) of reversible capacity in the sodium cells with the electrochemically active Fe(3+)/Fe(4+) redox will contribute to the development of rechargeable batteries from the earth-abundant elements operable at room temperature.
- Type
- letter
- Published
- 2012-06-01
- Cited by
- 2,081
- References
- 32
- OpenAlex
- https://openalex.org/W2167897546
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:205406905
Keywords
Manganese, Lithium (medication), Materials science, Sodium, Battery (electricity)
References
- In Situ X-Ray Diffraction Study of P 2 Na2 / 3 [ Ni1 / 3Mn2 / 3 ] O 2
- Electrochemistry of Manganese Dioxide in Lithium Nonaqueous Cell
- IFEFFIT: interactive XAFS analysis and FEFF fitting.
- Electrochemical intercalation activity of layered NaCrO2 vs. LiCrO2
- Non-cooperative Jahn-Teller effect in LiNiO2: An EXAFS study
- Ambient Temperature Cycling of an Na ‐ TiS2 Cell
- The large Debye–Scherrer camera installed at SPring-8 BL02B2 for charge density studies
- Electrochemical Na Insertion and Solid Electrolyte Interphase for Hard‐Carbon Electrodes and Application to Na‐Ion Batteries
- Preparation of LiFeO2 with Alpha‐ NaFeO2‐Type Structure Using a Mixed‐Alkaline Hydrothermal Method
- Electrochemical investigation of the P2–NaxCoO2 phase diagram.
- Sodium deintercalation from sodium iron oxide
- First-principles investigation of phase stability in Li x CoO 2
- First Principles Study on Factors Determining Battery Voltages of LiMO2 (M=Ti-Ni)
- Electrochemical intercalation of sodium in NaxCoO2 bronzes
- Structure and electrode reactions of layered rocksalt LiFeO 2 nanoparticles for lithium battery cath
- Staging Phase Transitions in Li x CoO2
- Fluorinated ethylene carbonate as electrolyte additive for rechargeable Na batteries.
- VESTA: a three-dimensional visualization system for electronic and structural analysis
- A general recursion method for calculating diffracted intensities from crystals containing planar faults
- Intercalation positive electrodes for rechargeable sodium cells
Cited by
- A size-dependent sodium storage mechanism in Li4Ti5O12 investigated by a novel characterization technique combining in situ X-ray diffraction and chemical sodiation.
- Exfoliated-SnS₂ restacked on graphene as a high-capacity, high-rate, and long-cycle life anode for sodium ion batteries.
- Thermal Expansion in Layered NaxMO2
- Simply mixed commercial red phosphorus and carbon nanotube composite with exceptionally reversible sodium-ion storage.
- Electrochemical characterization of NaFePO4 as positive electrode in aqueous sodium-ion batteries
- Growth mechanism and magnetic and electrochemical properties of Na0.44MnO2 nanorods as cathode material for Na-ion batteries
- Structural manipulation approaches towards enhanced sodium ionic conductivity in Na-rich antiperovskites
- Failure Mechanics of Functional Nanostructures in Advanced Technologies
- Sulfur covalently bonded graphene with large capacity and high rate for high-performance sodium-ion batteries anodes
- Dual hetero atom containing bio-carbon: Multifunctional electrode material for High Performance Sodium-ion Batteries and Oxygen Reduction Reaction
- Porous nitrogen doped carbon sphere as high performance anode of sodium-ion battery
- Improving the ionic conductivity of NASICON through aliovalent cation substitution of Na3Zr2Si2PO12
- Three-dimensionally interconnected nickel–antimony intermetallic hollow nanospheres as anode material for high-rate sodium-ion batteries
- Sodium Ion Diffusion and Voltage Trends in Phosphates Na4M3(PO4)2P2O7 (M = Fe, Mn, Co, Ni) for Possible High-Rate Cathodes
- Enhanced sodium storage property of copper nitrate hydrate by carbon nanotube
- SnO2 coated carbon cloth with surface modification as Na-ion battery anode
- Carbon Electrodes for K-Ion Batteries.
- First-Principles Investigation of a Phase Transition in NaxC6O6 as an Organic Cathode Material for Na-ion Batteries: Role of Intermolecule Bonding of C6O6
- P3-Type Layered Sodium-Deficient Nickel-Manganese Oxides: A Flexible Structural Matrix for Reversible Sodium and Lithium Intercalation.
- Electrospun P2-type Na(2/3)(Fe(1/2)Mn(1/2))O2 hierarchical nanofibers as cathode material for sodium-ion batteries.
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