Commercial lithium-ion batteries have excellent performance at room temperature for a few years. However, the calendar life and thermal stability (\u3e50 °C) need to be improved for many applications, including electric vehicles. We have conducted an investigation of the effect of thermal stabilizing additives, including dimethyl acetamide, vinylene carbonate, and lithium bis(oxalato) borate, on the performance of lithium ion batteries stored at 70 °C for one month. The reactions of the lithium hexafluorophosphate/carbonate electrolyte, with and without electrolyte additives, with the surface of the electrodes after initial formation cycling have been analyzed via a combination of IR-ATR and XPS. © 2009 Elsevier B.V. All rights reserved
The effect of additives upon the ability of meso-carbon microbead (MCMB) carbon LiNi xCo 1-xO 2 lith...
Li ion batteries (LIB) are ubiquitous in portable electronics, and are increasingly used in automoti...
The development of Lithium Ion Battery (LIB) electrolytes with improved thermal and electrochemical ...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years. How...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
With the intent of improving the performance of lithium-ion cells at high temperatures, we have inve...
An investigation of the effect of various thermal stabilizing additives on thermally abused lithium-...
An investigation of the effect of various thermal stabilizing additives on thermally abused lithium-...
As part of our continuing efforts to develop advanced electrolytes to improve the performance of lit...
In order to address the trade-off between the safety lithium ion battery (LIB) electrolytes and thei...
As part of our continuing efforts to develop advanced electrolytes to improve the performance of lit...
Lithium difluoro (oxalate) borate (LiDFOB) is used as thermal stabilizing and solid electrolyte inte...
The addition of 2% vinyl ethylene carbonate (VEC) into LiPF6/EC + DMC electrolyte can significantly ...
The effect of additives upon the ability of meso-carbon microbead (MCMB) carbon LiNi xCo 1-xO 2 lith...
Li ion batteries (LIB) are ubiquitous in portable electronics, and are increasingly used in automoti...
The development of Lithium Ion Battery (LIB) electrolytes with improved thermal and electrochemical ...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years. How...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
Commercial lithium-ion batteries have excellent performance at room temperature for a few years (3-5...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
With the intent of improving the performance of lithium-ion cells at high temperatures, we have inve...
An investigation of the effect of various thermal stabilizing additives on thermally abused lithium-...
An investigation of the effect of various thermal stabilizing additives on thermally abused lithium-...
As part of our continuing efforts to develop advanced electrolytes to improve the performance of lit...
In order to address the trade-off between the safety lithium ion battery (LIB) electrolytes and thei...
As part of our continuing efforts to develop advanced electrolytes to improve the performance of lit...
Lithium difluoro (oxalate) borate (LiDFOB) is used as thermal stabilizing and solid electrolyte inte...
The addition of 2% vinyl ethylene carbonate (VEC) into LiPF6/EC + DMC electrolyte can significantly ...
The effect of additives upon the ability of meso-carbon microbead (MCMB) carbon LiNi xCo 1-xO 2 lith...
Li ion batteries (LIB) are ubiquitous in portable electronics, and are increasingly used in automoti...
The development of Lithium Ion Battery (LIB) electrolytes with improved thermal and electrochemical ...