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Journal of the American Chemical Society, ISSN 0002-7863, 11/2008, Volume 130, Issue 45, pp. 14930 - 14931
To modify oxide structure and introduce a thin conductive film on Li4Ti5O12, thermal nitridation was adopted for the first time. NH3 decomposes surface... 
ROOM-TEMPERATURE | SPINEL | FILMS | CHEMISTRY, MULTIDISCIPLINARY | CYCLE
Journal Article
Chemistry of Materials, ISSN 0897-4756, 07/2017, Volume 29, Issue 14, pp. 5906 - 5914
A lithium (Li) metal anode is required to achieve a high-energy-density battery, but because of an undesirable growth of Li dendrites, it still has safety and... 
MODULUS | LOCAL CURRENT-DENSITY | INTERFACIAL LAYER | MATERIALS SCIENCE, MULTIDISCIPLINARY | GROWTH | CHEMISTRY, PHYSICAL | POLYMER ELECTROLYTES | DEFORMATION | BATTERIES
Journal Article
Nature Communications, ISSN 2041-1723, 06/2015, Volume 6, Issue 1, p. 7393
Silicon is receiving discernable attention as an active material for next generation lithium-ion battery anodes because of its unparalleled gravimetric... 
STORAGE | NANOPARTICLES | CO-NI/GAMMA-AL2O3 | NI/GAMMA-AL2O3 | PERFORMANCE | MULTIDISCIPLINARY SCIENCES | IN-SITU TEM | SIZE | ANODES | NANOCOMPOSITE | LITHIATION
Journal Article
Scientific Reports, ISSN 2045-2322, 01/2014, Volume 4, Issue 1, p. 3815
Lithium metal has shown a lot of promise for use as an anode material in rechargeable batteries owing to its high theoretical capacity. However, it does not... 
CYCLING EFFICIENCY | INTERFACE | CARBONATE | NANOCOMPOSITE POLYMER ELECTROLYTES | BEHAVIOR | MULTIDISCIPLINARY SCIENCES | LIQUID | GROWTH | SURFACE | SYSTEMS | BATTERIES | Viscosity | Electrolytes | Lithium | Anions | Batteries
Journal Article
Nature Communications, ISSN 2041-1723, 12/2017, Volume 8, Issue 1, pp. 1561 - 11
Journal Article
Journal Article
Electrochimica Acta, ISSN 0013-4686, 05/2010, Volume 55, Issue 13, pp. 4162 - 4169
The electrochemical lithiation-delithiation reaction was examined for LiMnPO in which different cations were substituted for part of Mn. The X-ray diffraction... 
Lithium-ion batteries | Surface film formation | Cation substitution | Lithium manganese phosphate | Lithium diffusion | ELECTROCHEMISTRY | LIMPO4 M | ELECTRODE MATERIALS | LIXMPO4 M | CHEMICAL DIFFUSION-COEFFICIENT | LI-ION BATTERIES | OLIVINES | LIFEPO4
Journal Article
Circulation, ISSN 0009-7322, 01/2014, Volume 129, Issue 3, pp. 304 - 312
Journal Article
Advanced Energy Materials, ISSN 1614-6832, 06/2016, Volume 6, Issue 11, pp. 1600271 - n/a
Journal Article
Journal of Power Sources, ISSN 0378-7753, 12/2013, Volume 244, pp. 494 - 498
Porosity effect of carbon materials on the electrochemical performances as cathode materials in non-aqueous Li-oxygen cells has been investigated. A carbon... 
Lithium-oxygen battery | Air cathode | Carbon aerogel | Mesoporosity | DISCHARGE | ELECTROCHEMISTRY | ELECTROLYTE | ENERGY & FUELS | CATALYSTS | Electrochemistry | Porosity | Chemical properties | Batteries | Analysis
Journal Article
Chemistry of Materials, ISSN 0897-4756, 10/2016, Volume 28, Issue 19, pp. 6942 - 6952
Anion doping is one of the most widely adopted strategies to improve the electrochemical performance of cathode materials for Li-ion batteries. However,... 
STRUCTURAL STABILITY | LINIO2 | THERMAL-INSTABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | AB-INITIO | CHEMISTRY | IMPROVEMENT | CHEMISTRY, PHYSICAL | FLUORINE | PHASE-STABILITY | HIGH-CAPACITY | LITHIUM
Journal Article
Journal of Power Sources, ISSN 0378-7753, 01/2015, Volume 273, pp. 210 - 215
Nanostructured λ-MnO and α-MnO are investigated for use in rechargeable Mg ion battery (MIB) cathodes. In order to prepare nanosized particles, the manganese... 
Manganese dioxide | Acid treatment | Magnesium ion insertion | Nanostructure | Cathode | Magnesium ion battery | ELECTROCHEMISTRY | ENERGY & FUELS | BEHAVIOR | ELECTRODES | SULFONE-BASED ELECTROLYTES | INTERCALATION | AQUEOUS-PHASE | LAMBDA-MNO2 | LIMN2O4 | LITHIUM | LI+-INSERTION | Spinel group | Nitriles | Batteries | Analysis | Thin films | Electrolytes | Dielectric films | Fading | Electrodes | Magnesium | Electric batteries | Rechargeable batteries | Cathodes
Journal Article
The New England Journal of Medicine, ISSN 0028-4793, 04/2010, Volume 362, Issue 15, pp. 1374 - 1382
Journal Article
by Lee, HC and Roev, V and Kim, TY and Park, MS and Lee, DJ and Im, D and Doo, SG
JOURNAL OF POWER SOURCES, ISSN 0378-7753, 11/2016, Volume 331, pp. 122 - 131
The capacity limits, local formation of Li2O2, passivation of active surfaces, and depletion of oxygen by mass transport characteristics in a composite cathode... 
ELECTROCHEMISTRY | Li-O-2 battery | Porous electrode | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | CATALYST | ENERGY DENSITY | Maximum capacity | TRANSPORT | Modeling and simulation | LI-AIR BATTERIES | Void effect
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 12/2015, Volume 54, Issue 50, pp. 15094 - 15099
The phase transition of layered manganese oxides to spinel phases is a well‐known phenomenon in rechargeable batteries and is the main origin of the capacity... 
Birnessite | phase transitions | spinels | crystal water | layered cathode materials | ION BATTERIES | SODIUM | RESOLUTION | ELECTRON-MICROSCOPY | CATHODE MATERIALS | CHEMISTRY, MULTIDISCIPLINARY | MAGNESIUM | LIMNO2 | RECHARGEABLE LITHIUM BATTERIES | Electrochemistry | Thermodynamics | Spinel group | Batteries | Electric properties | Phase transitions | Spectrum analysis
Journal Article