Electronically conductive phospho-olivines as lithium storage electrodes
Explore this paper's citation graph
Summary
It is shown that controlled cation non-stoichiometry combined with solid-solution doping by metals supervalent to Li+ increases the electronic conductivity of LiFePO4 by a factor of ∼108, which may allow development of lithium batteries with the highest power density yet.
- Type
- article
- Published
- 2002-10-01
- Cited by
- 2,779
- References
- 27
- OpenAlex
- https://openalex.org/W2097535432
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2741069
Keywords
Materials science, Energy storage, Lithium (medication), Conductivity, Electrical conductor
References
- Nonstoichiometry, diffusion, and electrical conductivity in binary metal oxides.
- Lithium extraction/insertion in LiFePO4: an X-ray diffraction and Mossbauer spectroscopy study
- Reactivity, stability and electrochemical behavior of lithium iron phosphates
- Effect of Structure on the Fe3 + / Fe2 + Redox Couple in Iron Phosphates
- Issues and challenges facing rechargeable lithium batteries
- Hole and Electron Doping of R2BaNiO5 (R = Rare Earths)
- Magnetic properties of the LiMPO 4 (M = Co, Ni) compounds
- Approaching Theoretical Capacity of LiFePO4 at Room Temperature at High Rates
- Crystal Chemistry of Silicate Minerals of Geophysical Interest
- Multipole analysis of the electron density in triphylite, LiFePO4, using X‐ray diffraction data
- Magnetoelectric properties of LiCoPO4: microscopic theory
- Electrical conduction in olivine
- Verwey-Type Transition and Magnetic Properties of the LiMn2O4Spinels
- Synthesis, redox potential evaluation and electrochemical characteristics of NASICON-related-3D framework compounds
- 5 V lithium cathodes based on spinel solid solutions Li2Co1+XMn3-XO8: -1 ≤ X ≤ 1
- Improved electrochemical performance of a LiFePO4-based composite cathode
- Modification in the electronic structure of cobalt bronze LixCoO2 and the resulting electrochemical properties
- Characterization of oxygen-deficient phases appearing in reduction of the perovskite-type LaNiO3 to La2Ni2O5
- Optimized LiFePO4 for Lithium Battery Cathodes
- Thermal stability of LiFePO4-based cathodes
Cited by
- Real-time studies of battery electrochemical reactions inside a transmission electron microscope.
- Nano/composite materials for lithium-ion batteries
- Nanostructured carbon materials: fabrication and applications
- Dynamic solubility limits in nanosized olivine LiFePO4.
- Suppression of phase separation in LiFePO₄ nanoparticles during battery discharge.
- 3D Proton Transfer Augments Bio‐Photocurrent Generation
- Cs3W3PO13: A Tungsten Phosphate with One-Dimensional Zigzag Tunnels Exhibiting Strongly Anisotropic Thermal Expansion.
- A stable lithium-rich surface structure for lithium-rich layered cathode materials
- Rapid preparation of high electrochemical performance LiFePO4/C composite cathode material with an ultrasonic-intensified micro-impinging jetting reactor.
- High-capacity Li2Mn0.8Fe0.2SiO4/carbon composite nanofiber cathodes for lithium-ion batteries
- Predicting Active Material Utilization in LiFePO4 Electrodes Using a Multiscale Mathematical Model
- The Fabrication of Titanium Dioxide Based Anode Material Using Aerosol Method
- Preparation and Characterization of Li2O-FeO-V2O5-P2O5 Glasses and Related Nanomaterials
- V 2O 3 modified LiFePO 4/C composite with improved electrochemical performance
- Studies of Li3V2(PO4)3 Additives for the LiFePO4-Based Li Ion Batteries
- Electronic structure of FePO 4 , LiFePO 4 , and related materials
- Microscale Engineering for the Structural Integrity and Transport Properties of Electrode Material in Li-ion Batteries
- Olivine-type cathodes: Achievements and problems
- Spectroscopic studies ofLixFePO4andLixM0.03Fe0.97PO4(M=Cr,Cu,Al,Ti)
- Aerosol Synthesis Of Cathode Materials For Li-Ion Batteries
Related papers
- Three dimensional high-performance micro-supercapacitors with switchable high power density and high energy density.
- 3D Nanostructured Binder Free Electrodes for Novel Energy Storage Devices
- An Asymmetric‐Electrolyte Zn−Air Battery with Ultrahigh Power Density and Energy Density
- Cobalt-Doped Nickel Phosphite for High Performance of Electrochemical Energy Storage.
- Design and synthesis of materials for supercapacitors with enhanced energy storage performance
- Supercapacitor: Evolution and review
- High power rechargeable batteries
- Maximizing energy density of lithium-ion batteries for electric vehicles: A critical review