Complex spinel titanate nanowires for a high rate lithium-ion battery
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- Type
- article
- Published
- 2011-04-28
- Cited by
- 112
- References
- 26
- OpenAlex
- https://openalex.org/W2064487613
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:98808876
Keywords
Lithium titanate, Spinel, Anode, Materials science, Nanowire
References
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- Nb2O5 nanobelts: A lithium intercalation host with large capacity and high rate capability
- Biosensing Properties of TitanateNanotube Films: Selective Detection of Dopamine in the Presence of Ascorbate and Uric Acid
- Mesoporous Co3O4 nanowire arrays for lithium ion batteries with high capacity and rate capability.
- Spinel Li[Li1/3Ti5/3]O4 as an anode material for lithium ion batteries
- Synthesis of Nanowire and Hollow LiFePO4 Cathodes for High-Performance Lithium Batteries
- Crystal chemistry and physical properties of complex lithium spinels Li2MM′3O8 (M=Mg, Co, Ni, Zn; M′=Ti, Ge)
- High-sensitivity humidity sensor based on a single SnO(2) nanowire.
- Order–disorder transition in the complex lithium spinel Li2CoTi3O8
- Semiconductor nanowires for energy conversion
- Synthesis of single crystalline spinel LiMn2O4 nanowires for a lithium ion battery with high power density.
- Nanomaterials for rechargeable lithium batteries.
- Template-free synthesis of Li[Ni0.25Li0.15Mn0.6]O2 nanowires for high performance lithium battery cathode.
- An efficient photocatalyst structure: TiO(2)(B) nanofibers with a shell of anatase nanocrystals.
- Synthesis, Characterization, and Lithium Storage Capability of AMoO4 (A = Ni, Co) Nanorods†
- Growth of oriented single-crystalline rutile TiO(2) nanorods on transparent conducting substrates for dye-sensitized solar cells.
- Li2ZnTi3O8 nanorods: A new anode material for lithium-ion battery
- Nanoscale Materials for Lithium-Ion Batteries
- A new anode material made of Zn2Ti3O8 nanowires: synthesis and electrochemical properties.
Cited by
- Development and Characterization of Nano-Structured LiFePO4 Cathode and Li4Ti5O12 Anode Materials for High-Performance Li-Ion Battery
- High performance Na-doped lithium zinc titanate as anode material for Li-ion batteries
- Improved the lithium storage capability of BaLi2Ti6O14 by electroless silver coating
- Li3.33Cu1.005Ti4.665O12/CuO composite with P4332 space group for Li-ion batteries: synergistic effect of substituting and compositing
- Layered titanate nanostructures: perspectives for industrial exploitation
- Layered titanate nanostructures and their derivatives as negative electrode materials for lithium-ion batteries
- Self-assembled nanoporous rutile TiO2 mesocrystals with tunable morphologies for high rate lithium-ion batteries
- A new strategy for synthesis of lithium zinc titanate as an anode material for lithium ion batteries
- Preparation of Li4Ti5O12 by solution ion-exchange of sodium titanate nanotube and evaluation of electrochemical performance
- Lithium storage behavior of manganese based complex spinel titanate as anode material for Li-ion batteries
- Al-doped Li2ZnTi3O8 as an effective anode material for lithium-ion batteries with good rate capabilities
- Fabrication of spinel Li4−xTi5O12 via ion exchange for high-rate lithium-ion batteries
- Cation disordered rock salt phase Li2CoTiO4 as a potential cathode material for Li-ion batteries
- Lithium cobalt oxide coated lithium zinc titanate anode material with an enhanced high rate capability and long lifespan for lithium-ion batteries
- One step sol–gel synthesis of Li2ZnTi3O8/C nanocomposite with enhanced lithium-ion storage properties
- Lithium storage mechanism in cubic lithium copper titanate anode material upon lithiation/delithiation process
- Metal–organic frameworks: Promising materials for enhancing electrochemical properties of nanostructured Zn2SnO4 anode in Li-ion batteries
- Synthesis and performance of Li2NiTi3O8 as a new anode material for lithium-ion batteries
- Lithium barium titanate: A stable lithium storage material for lithium-ion batteries
- Solid state synthesis of Li2Co0.5Cu0.5Ti3O8 and Li2CoTi3O8 and their comparative lithium storage properties
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