Spinel lithium titanate (Li4Ti5O12) as novel anode material for room-temperature sodium-ion battery
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- Type
- article
- Published
- 2012-02-01
- Cited by
- 132
- References
- 23
- Access
- Open access
- OpenAlex
- https://openalex.org/W1508768235
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:56567698
Keywords
Anode, Lithium titanate, Spinel, Materials science, Battery (electricity)
References
- Zero‐Strain Insertion Material of Li [ Li1 / 3Ti5 / 3 ] O 4 for Rechargeable Lithium Cells
- Porous Li4Ti5O12 Coated with N‐Doped Carbon from Ionic Liquids for Li‐Ion Batteries
- Nanostructured Anode Material for High‐Power Battery System in Electric Vehicles
- A Kinetic Two‐Phase and Equilibrium Solid Solution in Spinel Li4+xTi5O12
- Improved Li-storage performance of Li4Ti5O12 coated with C-N compounds derived from pyrolysis of urea through a low-temperature approach.
- Room-temperature sodium-ion batteries: Improving the rate capability of carbon anode materials by templating strategies
- Electrochemical Na Insertion and Solid Electrolyte Interphase for Hard‐Carbon Electrodes and Application to Na‐Ion Batteries
- Carbon coated Na3V2(PO4)3 as novel electrode material for sodium ion batteries
- Electrochemical investigation of the P2–NaxCoO2 phase diagram.
- Building better batteries
- A high-rate long-life Li4Ti5O12/Li[Ni0.45Co0.1Mn1.45]O4 lithium-ion battery.
- Is lithium the new gold?
- Towards understanding the effects of carbon and nitrogen-doped carbon coating on the electrochemical performance of Li4Ti5O12 in lithium ion batteries: a combined experimental and theoretical study.
- Na2Ti3O7: Lowest voltage ever reported oxide insertion electrode for sodium ion batteries
- High Capacity Anode Materials for Rechargeable Sodium‐Ion Batteries
- Carbon-coated nano-sized Li4Ti5O12 nanoporous micro-sphere as anode material for high-rate lithium-ion batteries
- The low-temperature (400 °C) coating of few-layer graphene on porous Li4Ti5O12viaC28H16Br2 pyrolysis for lithium-ion batteries
- Reversible Sodium Ion Insertion in Single Crystalline Manganese Oxide Nanowires with Long Cycle Life
- Electrochemical study of Li4Ti5O12 as negative electrode for Li-ion polymer rechargeable batteries
- Ionothermal Synthesis of Sodium-Based Fluorophosphate Cathode Materials
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.
- Advancement in sodium-ion rechargeable batteries
- Variation of Ti Valence with Lithium Content in Lithiated/Delithiated Li4Ti5O12 Studied by X-Ray Absorption near the Edge Structure
- Li4Ti5O12 nanosheets as high-rate and long-life anode materials for sodium-ion batteries
- Ex situ electrochemical sodiation/desodiation observation of Co₃O₄ anchored carbon nanotubes: a high performance sodium-ion battery anode produced by pulsed plasma in a liquid.
- Update on anode materials for Na-ion batteries
- rGO/nano Sb composite: a high performance anode material for Na+ ion batteries and evidence for the formation of nanoribbons from the nano rGO sheet during galvanostatic cycling
- Study of New Active Materials for Rechargeable Sodium-Ion Batteries
- Update on Na-based battery materials. A growing research path
- Improvement of cycle behavior of Si/Sn anode composite supported by stable Si–O–C skeleton
- Superior Electrochemical Performance and Storage Mechanism of Na3V2(PO4)3 Cathode for Room‐Temperature Sodium‐Ion Batteries
- Is TiO2 (B) the Future of Titanium-Based Battery Materials?
- Irreversible structural change of a spinel Li4Ti5O12 particle via Na insertion-extraction cycles of a sodium-ion battery
- Octahedral tin dioxide nanocrystals as high capacity anode materials for Na-ion batteries.
- Amorphous monodispersed hard carbon micro-spherules derived from biomass as a high performance negative electrode material for sodium-ion batteries
- Experimental visualization of the diffusion pathway of sodium ions in the Na3[Ti2P2O10F] anode for sodium-ion battery
- The local atomic structure and chemical bonding in sodium tin phases
- Electrochemical and thermal characterization of lithium titanate spinel anode in C–LiFePO4//C–Li4Ti5O12 cells at sub-zero temperatures
- Lithium Storage in Li4Ti5O12 Spinel: The Full Static Picture from Electron Microscopy
- Crystallinity dependence of electrochemical properties for LiFePO4
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