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Lithium-Titanate Material For Lithium-Ion Batteries
The lithium-titanate material, with spinel crystal structure is the second commercially used negative electrode material in lithium-ion batteries. The material possess interesting electrochemical properties like long-term durability and stability. On the other hand, the material has lower energy density and is artificially synthesized that makes it ...
Fíbek, Michal
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Nanoscale Porous Framework of Lithium Titanate for Ultrafast Lithium Insertion†
Angewandte Chemie - International Edition, 2012Thomas Bein +2 more
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Lithium Lanthanum Titanates: A Review
ChemInform, 2003AbstractFor Abstract see ChemInform Abstract in Full Text.
S. Stramare, V. Thangadurai, W. Weppner
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The preparation and characterization of tabular, pearlescent Fe-doped potassium lithium titanate
Potassium chloride was used as flux to prepare tabular crystals of both potassium lithium titanate and Fe-doped potassium lithium titanate employing an optimum mass ratio of flux: raw materials.
Shu Yin, Xiangwen Liu
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Insertion of Lithium into Nanosized Lithium Titanate
ECS Transactions, 2008The insertion of lithium into Li4Ti5O12 in aprotic electrolytes was investigated. Average capacity 100 to 130 mAh/g and potential range 1.2 to 1.5 V (vss. Li) were found. The insertion of litium yielded in extended decrease of material resistivity and was accompanied by coloration of the material from white to deep blue.
Lukas Rubacek +4 more
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Methodology for the recovery of lithium from lithium titanate
Journal of Nuclear Materials, 2005A process is described offering efficiency and specificity to recover lithium carbonate from lithium titanate pebbles partially burnt by neutron irradiation. The chemical route considers the extraction of the lithium from the spent fuel ceramics and its recovery as lithium carbonate, by dissolution in water, followed by precipitation in ethanol ...
Silvia Lagos, Rebeca Becerra
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Lithium-Titanate as a Negative Electrode for Lithium-Ion Batteries
ECS Transactions, 2015The safety issue of lithium-ion batteries is current important research area. In recent years, the trend is to use higher capacity batteries allowing user to store more energy, to extract it at a higher rate, and to extend the application to new fields such as electrical vehicles propulsion, and smart grid.
Jiri Libich +3 more
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Structural Characterization of Titanate Nanotubes for Lithium Storage
Journal of Nanoscience and Nanotechnology, 2008Titanate nanotubes were synthesized by hydrothermal method using various TiO2 precursors as starting materials. The electrochemical properties were investigated by cyclic voltammetric methods. The microstructure and morphology of the synthesized powders were characterized by XRD, TEM.
Dong Hyun, Kim +9 more
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Mechanism of lithium intercalation in titanates
Journal of Solid State Electrochemistry, 2008First principles calculations of Li insertion in a variety of titanate structures have revealed a common mechanism underlying the intercalation behavior of these materials. The mechanism is based on the accommodation of the electron density donated upon intercalation in particular orbitals of Ti ions and is governed by a strong coupling between the ...
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Genetics of superionic conductivity in lithium lanthanum titanates
Physical Chemistry Chemical Physics, 2015Using a genetic algorithm in conjunction with molecular dynamics we describe diffusion mechanisms and provide evidence that there is a 3D percolated network of Li diffusion pathways in La 2/3−x Li 3x TiO 3 .
E E, Jay +4 more
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