Application of a nitroxide radical as overcharge protection in rechargeable lithium batteries
暂无分享,去创建一个
[1] G. Eggert,et al. Electrochemical reactions of propylenecarbonate and electrolytes solved therein ― a DEMS study , 1986 .
[2] K. Abraham,et al. n‐Butylferrocene for Overcharge Protection of Secondary Lithium Batteries , 1990 .
[3] E. Cattaneo,et al. Anodic stability of propylene carbonate electrolytes at potentials above 4V against lithium: An on-line MS andin situ FTIR study , 1991 .
[4] Subbarao Surampudi,et al. Analysis of Redox Additive‐Based Overcharge Protection for Rechargeable Lithium Batteries , 1991 .
[5] P. Novák,et al. The influence of water on the oxidation of propylene carbonate on platinum—an electrochemical, in situ FT-ir and on-line MS study , 1991 .
[6] O. Matsumoto,et al. Vaporization of Graphite in Plasma Arc and Identification of C 60 in the Deposit , 1992 .
[7] Petr Novák,et al. Oxidative Electrolyte Solvent Degradation in Lithium‐Ion Batteries: An In Situ Differential Electrochemical Mass Spectrometry Investigation , 1999 .
[8] Momoe Adachi,et al. Aromatic Compounds as Redox Shuttle Additives for 4 V Class Secondary Lithium Batteries , 1999 .
[9] P. Biensan,et al. Solubility of carbon dioxide in alkylcarbonates and lactones , 2003 .
[10] J. Dahn,et al. High-Rate Overcharge Protection of LiFePO4-Based Li-Ion Cells Using the Redox Shuttle Additive 2,5-Ditertbutyl-1,4-dimethoxybenzene , 2005 .
[11] Jeff Dahn,et al. Studies of aromatic redox shuttle additives for LiFePO4-based Li-ion cells , 2005 .
[12] T. Breton,et al. Allylic oxidation: easy synthesis of alkenones from activated alkenes with TEMPO , 2005 .
[13] J. Dahn,et al. Spectroelectrochemical Studies of Redox Shuttle Overcharge Additive for LiFePO4-Based Li-Ion Batteries , 2005 .
[14] J. Dahn,et al. Chemical Overcharge and Overdischarge Protection for Lithium-Ion Batteries , 2005 .