A novel nonflammable electrolyte for lithium-ion batteries has been developed. The optimized electrolyte is composed of LiPF6 in a mixture of carbonate solvents with added dimethyl methylphosphonate as a flame retarding cosolvent and lithium bis(oxalatoborate) as an anode film forming additive. Conductivity, thermal stability, electrochemical stability, self extinguishing times, electrochemical cycling, and ex situ surface analysis of the cycled electrodes are reported. This novel electrolyte has a comparable cycling efficiency to the current state-of-the-art electrolytes for lithium-ion batteries but is nonflammable. © 2010 The Electrochemical Society
Mixtures of alkylcarbonate electrolytes with an ionic liquid (IL) and a lithium salt have been studi...
Mixtures of alkylcarbonate electrolytes with an ionic liquid (IL) and a lithium salt have been studi...
Lithium-ion batteries are the most commonly used source of power for modern electronic devices. Howe...
A novel nonflammable electrolyte for lithium-ion batteries has been developed. The optimized electro...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
International audienceThe flammability of conventional alkyl carbonate electrolytes hinders the inte...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
The two new phosphates, DMMEMP and DEMEMP containing ethylene oxide (EO) have been synthesized and u...
Mixtures of alkylcarbonate electrolytes with an ionic liquid (IL) and a lithium salt have been studi...
Mixtures of alkylcarbonate electrolytes with an ionic liquid (IL) and a lithium salt have been studi...
Mixtures of alkylcarbonate electrolytes with an ionic liquid (IL) and a lithium salt have been studi...
Lithium-ion batteries are the most commonly used source of power for modern electronic devices. Howe...
A novel nonflammable electrolyte for lithium-ion batteries has been developed. The optimized electro...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
International audienceThe flammability of conventional alkyl carbonate electrolytes hinders the inte...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
The flammability of conventional alkyl carbonate electrolytes hinders the integration of large-scale...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
Rechargeable metallic lithium batteries are considered as promising candidates for next-generation e...
The two new phosphates, DMMEMP and DEMEMP containing ethylene oxide (EO) have been synthesized and u...
Mixtures of alkylcarbonate electrolytes with an ionic liquid (IL) and a lithium salt have been studi...
Mixtures of alkylcarbonate electrolytes with an ionic liquid (IL) and a lithium salt have been studi...
Mixtures of alkylcarbonate electrolytes with an ionic liquid (IL) and a lithium salt have been studi...
Lithium-ion batteries are the most commonly used source of power for modern electronic devices. Howe...