Nanoscale LiFePO4 and Li4Ti5O12 for High Rate Li-ion Batteries
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- Type
- article
- Published
- 2009-12-01
- Cited by
- 88
- References
- 36
- Access
- Open access
- OpenAlex
- https://openalex.org/W308199201
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:55730647
Keywords
Nanoparticle, Electrochemistry, Nanomaterials, Materials science, Pyrolysis
References
- A ( LiFePO4 – AC ) ∕ Li4Ti5O12 Hybrid Battery Capacitor
- Preparation of micron-sized Lisub 4Tisub 5Osub 12 and its electrochemistry in polyacrylonitrile electrolyte-based lithium cells
- Facile synthesis of nanocrystalline Li4Ti5O12 (spinel) exhibiting fast Li insertion
- Li Insertion into Li[sub 4]Ti[sub 5]O[sub 12] (Spinel)
- Studies of Mg-substituted Lisub 4x4Mgsub xTisub 5Osub 12 spinel electrodes (0lexle1) for lithium batteries.
- A New Synthetic Route for Preparing LiFePO4 with Enhanced Electrochemical Performance
- Optimized Lithium Iron Phosphate for High-Rate Electrochemical Applications
- Emulsion drying synthesis of olivine LiFePO4/C composite and its electrochemical properties as lithium intercalation material
- Reducing Carbon in LiFePO4 / C Composite Electrodes to Maximize Specific Energy, Volumetric Energy, and Tap Density
- Electrochemical Kinetics and Safety of 2-Volt Class Li-Ion Battery System Using Lithium Titanium Oxide Anode
- Phase equilibria in the Li–Ti–O system and physical properties of Li2TiO3
- Nano-particle Li4Ti5O12 spinel as electrode for electrochemical generators
- High-Rate Overcharge Protection of LiFePO4-Based Li-Ion Cells Using the Redox Shuttle Additive 2,5-Ditertbutyl-1,4-dimethoxybenzene
- Magnetic studies of phospho-olivine electrodes in relation with their electrochemical performance in Li-ion batteries
- A LiTi2O4–LiFePO4 novel lithium-ion polymer battery
- Optimized LiFePO4 for Lithium Battery Cathodes
- Electronically conductive phospho-olivines as lithium storage electrodes
- Synthesis and characterization of nano-sized LiFePO4 cathode materials prepared by a citric acid-based sol–gel route
- Factors Influencing the Quality of Carbon Coatings on LiFePO4
- Phospho‐olivines as Positive‐Electrode Materials for Rechargeable Lithium Batteries
Cited by
- Effect of polyacrylonitrile on triethylene glycol diacetate-2-propenoic acid butyl ester gel polymer electrolytes with interpenetrating crosslinked network for flexible lithium ion batteries
- Effects of Li4Ti5O12 coating on the performance of LiNi0.5Mn1.5O4 cathode in Li-ion batteries
- Exploring Electrochemistry and Interface Characteristics of Lithium-Ion Cells with Li1.2Ni0.15Mn0.55Co0.1O2 Positive and Li4Ti5O12 Negative Electrodes
- Binary Li4Ti5O12‐Li2Ti3O7 Nanocomposite as an Anode Material for Li‐Ion Batteries
- 纳米FePO 4 的合成及其正极材料LiFePO 4 /C的电化学性能研究
- Degradation diagnosis of aged Li4Ti5O12/LiFePO4 batteries
- Synthetic, Structural, and Electrochemical Study of Monoclinic Na4Ti5O12 as a Sodium-Ion Battery Anode Material
- Donut-shaped Li4Ti5O12 structures as a high performance anode material for lithium ion batteries.
- Pattern Design of and Epitaxial Growth on Patterned Sapphire Substrates for Highly Efficient GaN-Based LEDs
- Influence of conductive additives and surface fluorination on the charge/discharge behavior of lithium titanate (Li4/3Ti5/3O4)
- Influence of the synthesis method on the electrochemical properties of the Li4Ti5O12 spinel in Li-half and Li-ion full-cells. A systematic comparison
- Effect of thermal treatment used in the sol–gel synthesis of Li4Ti5O12 spinel on its electrochemical properties as anode for lithium ion batteries
- Synthesis and electrochemical properties of nanosized LiFeO2 particles with a layered rocksalt structure for lithium batteries
- Growth of LiFePO4 nanoplatelets with orientated (010) facets on graphene for fast lithium storage
- Microemulsion-assisted synthesis of ultrafine Li4Ti5O12/C nanocomposite with oleic acid as carbon precursor and particle size controller
- Design of a Nitrogen-Doped, Carbon-Coated Li4 Ti5 O12 Nanocomposite with a Core-Shell Structure and Its Application for High-Rate Lithium-Ion Batteries.
- ZnFe2O4-C/LiFePO4-CNT: A Novel High-Power Lithium-Ion Battery with Excellent Cycling Performance
- Electrochemical performance of Li4Ti5O12/carbon nanofibers composite prepared by an in situ route for Li-ion batteries
- Commercial and research battery technologies for electrical energy storage applications
- Li4−xNaxTi5O12 with low operation potential as anode for lithium ion batteries
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