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Journal Article
Journal Article
Energy & Environmental Science, ISSN 1754-5692, 06/2016, Volume 9, Issue 6, pp. 1931 - 1954
The Li-excess oxide compound is one of the most promising positive electrode materials for next generation batteries exhibiting high capacities of >300 mA h g... 
Fading | Lithium-ion batteries | Electrode materials | Compensation | Charge | Oxides | Lithium | Nanostructure
Journal Article
Energy and Environmental Science, ISSN 1754-5692, 6/2016, Volume 9, Issue 6, pp. 1931 - 1954
The Li-excess oxide compound is one of the most promising positive electrode materials for next generation batteries exhibiting high capacities of >300 mA h g... 
ENHANCED ELECTROCHEMICAL PERFORMANCE | ENERGY & FUELS | IMPROVED RATE CAPABILITY | X-RAY-ABSORPTION | VOLTAGE-FADE | IRREVERSIBLE CAPACITY LOSS | HIGH-ENERGY-DENSITY | CHEMISTRY, MULTIDISCIPLINARY | ENGINEERING, CHEMICAL | RICH CATHODE MATERIALS | ENVIRONMENTAL SCIENCES | TRANSITION-METAL OXIDES | MOLTEN-SALT METHOD | EQUAL-TO 0.5
Journal Article