Flame retarding co-solvents triphenyl phosphate (TPP) and dimethyl methylphosphonate (DMMP) were incorporated into a standard binary LiPF6/ethylene carbonate (EC)/Ethyl methyl carbonate (EMC) electrolyte with and without the anode solid electrolyte interface (SEI) film forming additive, lithium bis(oxalato)borate (LiBOB). Thin-film silicon/Li cells were cycled with the different electrolytes. The standard electrolyte has poor cycling performance losing ∼ 50% of the initial capacity during the first 50 cycles. Electrolytes containing TPP and DMMP show comparable cycling performance to the standard electrolyte. Incorporation of LiBOB into the standard electrolyte or the standard electrolyte containing flame retarding co-solvents results in im...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
A novel nonflammable electrolyte for lithium-ion batteries has been developed. The optimized electro...
The cycling performance of Si-nanoparticle/Li cells with different electrolytes has been investigate...
In order to address the trade-off between the safety lithium ion battery (LIB) electrolytes and thei...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
With the intent of improving the safety characteristics of lithium ion cells, electrolytes containin...
A number of electrolyte formulations that have improved safety characteristics have been developed f...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
The flammability of organic electrolyte solutions has a safety risk during the large-scale applicati...
Developing electrolytes that enable commercially viable lithium metal anodes for rechargeable lithiu...
Developing electrolytes that enable commercially viable lithium metal anodes for rechargeable lithiu...
Developing electrolytes that enable commercially viable lithium metal anodes for rechargeable lithiu...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
A novel nonflammable electrolyte for lithium-ion batteries has been developed. The optimized electro...
The cycling performance of Si-nanoparticle/Li cells with different electrolytes has been investigate...
In order to address the trade-off between the safety lithium ion battery (LIB) electrolytes and thei...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
With the intent of improving the safety characteristics of lithium ion cells, electrolytes containin...
A number of electrolyte formulations that have improved safety characteristics have been developed f...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
The flammability of organic electrolyte solutions has a safety risk during the large-scale applicati...
Developing electrolytes that enable commercially viable lithium metal anodes for rechargeable lithiu...
Developing electrolytes that enable commercially viable lithium metal anodes for rechargeable lithiu...
Developing electrolytes that enable commercially viable lithium metal anodes for rechargeable lithiu...
The cycling performance of silicon thin film electrodes was investigated in the presence of anode so...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
A novel nonflammable electrolyte for lithium-ion batteries has been developed. The optimized electro...