Nanostructures and lithium electrochemical reactivity of lithium titanites and titanium oxides: A review
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- Type
- review
- Published
- 2009-07-15
- Cited by
- 862
- References
- 43
- OpenAlex
- https://openalex.org/W2102815917
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:98204738
Keywords
Brookite, Materials science, Lithium (medication), Electrochemistry, Rutile
References
- Preparation of micron-sized Lisub 4Tisub 5Osub 12 and its electrochemistry in polyacrylonitrile electrolyte-based lithium cells
- Zero‐Strain Insertion Material of Li [ Li1 / 3Ti5 / 3 ] O 4 for Rechargeable Lithium Cells
- Issues and challenges facing rechargeable lithium batteries
- TiO2(B) a new form of titanium dioxide and the potassium octatitanate K2Ti8O17
- Baddeleyite-Type High-Pressure Phase of TiO2
- The soft chemical synthesis of TiO2 (B) from layered titanates
- Effect of diffusion on lithium intercalation in titanium dioxide.
- Synthesis and Li-Ion Insertion Properties of Highly Crystalline Mesoporous Rutile TiO2
- Theoretical study of lithium intercalation in rutile and anatase.
- Two phase morphology limits lithium diffusion in TiO(2)(anatase): a (7)Li MAS NMR study.
- Li+ Ion Insertion in TiO2 (Anatase). 2. Voltammetry on Nanoporous Films
- New hollandite oxides: TiO2(H) and K0.06TiO2
- The crystal structures of the lithium-inserted metal oxides Li0.5TiO2 anatase, LiTi2O4 spinel, and Li2Ti2O4
- Lithium insertion and mobility in the TiO2-anatase/titanate structure: A periodic DFT study
- TiO2(B) Nanowires as an Improved Anode Material for Lithium‐Ion Batteries Containing LiFePO4 or LiNi0.5Mn1.5O4 Cathodes and a Polymer Electrolyte
- Multiple Li positions inside oxygen octahedra in lithiated TiO2 anatase.
- Electronic structure of electrochemically Li-inserted TiO2 studied with synchrotron radiation electron spectroscopies
- Structure and electrochemistry of the spinel oxides LiTi2O4 and Li43Ti53O4
- Lithium Intercalation in Nanoporous Anatase TiO2 Studied with XPS
- TiO2–B nanowires as negative electrodes for rechargeable lithium batteries
Cited by
- N-DOPED MULTIWALLED CARBON NANOTUBES: FUNCTIONALIZATION, CHARACTERIZATION AND APPLICATION IN LI ION BATTERIES
- TiO2 and SnO2@TiO2 hollow spheres assembled from anatase TiO2 nanosheets with enhanced lithium storage properties.
- Hierarchical Nanotube-Constructed Porous TiO2-B Spheres for High Performance Lithium Ion Batteries
- Photoemission Fingerprints for Structural Identification of Titanium Dioxide Surfaces.
- Structural Changes in Lithium Battery Materials Induced by Aging or Usage
- An advanced configuration TiO2/LiFePO4 polymer lithium ion battery
- Electrospun Si/Carbon Composite Nanofiber Anodes for Lithium-Ion Batteries.
- Novel Nanostructured Materials for Solar Fuel Production and Advanced Rechargeable Batteries
- Hyperfine Interactions in the Electron Paramagnetic Resonance Spectra of Point Defects in Wide-Band-Gap Semiconductors
- Synthesis and electrochemical analysis of a nanostructured spindle shaped TiO2
- Hollow spherical titanium dioxide nanoparticles for energy and environmental applications
- Hierarchically structured porous TiO2 spheres constructed by interconnected nanorods as high performance anodes for lithium ion batteries
- From titanates to TiO2 nanostructures: Controllable synthesis, growth mechanism, and applications
- Effect of the specific surface area on thermodynamic and kinetic properties of nanoparticle anatase TiO 2 in lithium-ion batteries
- Modification of TiO2 powder via atmospheric dielectric barrier discharge treatment for high performance lithium-ion battery anodes
- A photo-(electro)-catalytic system illustrating the effect of lithium ions on titania surface energetics and charge transfer
- Absorption mechanism of carbon-nanotube paper-titanium dioxide as a multifunctional barrier material for lithium-sulfur batteries
- Phases Hybriding and Hierarchical Structuring of Mesoporous TiO2 Nanowire Bundles for High‐Rate and High‐Capacity Lithium Batteries
- 수열법에 의한 Li₄Ti₅O₁₂ Nanofibers 합성 및 전기화학적 특성에 관한 연구
- Facile Fabrication Of Mesostructured Zn2sno4 Based Anode Materials For Reversible Lithium Ion Storage
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