| 1 |
Lithium batteries and cathode materials.  |
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| 2 |
Building better batteries.  |
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| 3 |
Who will drive electric vehicles, olivine or spinel?  |
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| 4 |
Electrochemical analysis for cycle performance and capacity fading of a lithium-ion battery cycled at elevated temperature  |
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| 5 |
Synthesis of nanowire and mesoporous low-temperature LiCoO2 by a post-templating reaction.  |
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| 6 |
Enhanced cycling performance of spinel LiMn2O4 coated with ZnMn2O4 shell  |
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| 7 |
Improving the high-temperature performance of LiMn 2O 4 spinel electrodes by coating the active mass with MgO via a sonochemical method  |
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| 8 |
Structural and electrochemical properties of the spinel Li(Mn 2− x Li x/4 Co 3 x/4 )O 4  |
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| 9 |
Neutron powder diffraction studies of LiMn 2− y Al y O 4 synthesized by the emulsion drying method  |
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| 10 |
Preparation and electrochemical investigation of LiMn 2 − xMe xO 4 (Me: Ni, Fe, and x = 0.5, 1) cathode materials for secondary lithium batteries  |
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| 11 |
Preparation of spherical spinel LiMn 2O 4 cathode material for Li-ion batteries  |
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| 12 |
Isothermal calorimetry investigation of Li 1+ xMn 2− yAl zO 4 spinel  |
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| 13 |
Aluminum oxide as a multi-function agent for improving battery performance of LiMn 2O 4 cathode  |
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| 14 |
Characterization and electrochemical performance of the spinel LiMn 2O 4 prepared from ε-MnO 2  |
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| 15 |
Electrodeposition synthesis and electrochemical properties of nanostructured g-MnO2 films  |
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| 16 |
Hill, L. I., Verbaere, A. and Guyomard, D., “MnO2 (α-, β-, γ-) Compounds Prepared by Hydrothermal-electrochemical Synthesis: Characterization, Morphology, and Lithium Insertion Behavior,” J. Power Sources., 119, 226-231(2003). |
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| 17 |
Solid State Sciences Vol. 5, 2003. Author Index  |
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| 18 |
Optimization of synthesis condition and electrode fabrication for spinel LiMn 2O 4 cathode  |
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| 19 |
Submicrocubes and highly oriented assemblies of MnCO 3 synthesized by ultrasound agitation method and their thermal transformation to nanoporous Mn 2O 3  |
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| 20 |
Facile Synthesis of Nanoporous gamma -MnO~2 Structures and Their Application in Rechargeable Li-Ion Batteries  |
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| 21 |
Synthesis of porous and hollow microspheres of nanocrystalline Mn 2O 3  |
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| 22 |
Pistoia, G., Antonini, A., Zane, D. and Pasquali, M., “Synthesis of Mn Spinels From Different Polymorphs of MnO2,” J. Power Sources., 56, 37-43(1995). |
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