In order to address the trade-off between the safety lithium ion battery (LIB) electrolytes and their electrochemical performance, synergetic effects of flame retardant additives (FRs) in combination with film forming additives (FFAs) are investigated. Triphenyl phosphate (TPP) and a silicon-containing additive (WA) are applied as FRs to improve the onset temperature of the thermal runaway of a LIB standard electrolyte (LP57: 1 M LiPF6 in EC:EMC 3:7) about 15 K and 28 K, respectively. The application of the FRs in MCMB graphite/lithium metal and NMC111/lithium metal three-electrode cells induces insufficiencies in terms of charge/discharge cycling stability and rate capability.It is investigated if the addition of FFAs can degrade the insuf...
Investigations on the effect of flame retardant additives (FRs) on the abuse tolerance of large scal...
Lithium-ion technology takes the lead in electric mobility systems, resulting in an increase in the ...
Further increase in the specific energy/energy density of lithium ion batteries can be achieved via ...
With the intent of improving the safety characteristics of lithium ion cells, electrolytes containin...
Within this 1st part of a comparative study, flame retardant electrolyte additives (FRs), as candida...
Flame retarding co-solvents triphenyl phosphate (TPP) and dimethyl methylphosphonate (DMMP) were inc...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
Lithium-ion batteries are being increasingly used and deployed commercially. Cell-level improvements...
Lithium-ion batteries are being increasingly used and deployed commercially. Cell-level improvements...
The use of Lithium-ion batteries (LIB\u27s) in commercial electronics such as computers and cell pho...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
Lithium-ion technology takes the lead in electric mobility systems, resulting in an increase in the ...
Lithium-ion technology takes the lead in electric mobility systems, resulting in an increase in the ...
The flammability of organic electrolyte solutions has a safety risk during the large-scale applicati...
Investigations on the effect of flame retardant additives (FRs) on the abuse tolerance of large scal...
Lithium-ion technology takes the lead in electric mobility systems, resulting in an increase in the ...
Further increase in the specific energy/energy density of lithium ion batteries can be achieved via ...
With the intent of improving the safety characteristics of lithium ion cells, electrolytes containin...
Within this 1st part of a comparative study, flame retardant electrolyte additives (FRs), as candida...
Flame retarding co-solvents triphenyl phosphate (TPP) and dimethyl methylphosphonate (DMMP) were inc...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
The development and subsequent incorporation of flame retardant additives (FRAs) has become a priori...
Lithium-ion batteries are being increasingly used and deployed commercially. Cell-level improvements...
Lithium-ion batteries are being increasingly used and deployed commercially. Cell-level improvements...
The use of Lithium-ion batteries (LIB\u27s) in commercial electronics such as computers and cell pho...
We have developed novel non-flammable high voltage electrolytes for lithium ion batteries. The optim...
Lithium-ion technology takes the lead in electric mobility systems, resulting in an increase in the ...
Lithium-ion technology takes the lead in electric mobility systems, resulting in an increase in the ...
The flammability of organic electrolyte solutions has a safety risk during the large-scale applicati...
Investigations on the effect of flame retardant additives (FRs) on the abuse tolerance of large scal...
Lithium-ion technology takes the lead in electric mobility systems, resulting in an increase in the ...
Further increase in the specific energy/energy density of lithium ion batteries can be achieved via ...