Herein, we developed a high-performance lithium ion conducting hybrid solid electrolyte, consisted of LiTFSI salt, Py14TFSI ionic liquid, and TiO2 nanoparticles. The hybrid solid electrolyte prepared by a facile method had high room temperature ionic conductivity, excellent thermal stability and low interface resistance with good contact. In addition, the lithium transference number was highly increased by the scavenger effect of TiO2 nanoparticles. With the hybrid solid electrolyte, the pouch-type solid-state battery exhibited high initial discharge capacity of 150mAhg(-1) at room temperature, and even at 1C, the reversible capacity was as high as 106mAhg(-1)
International audienceWe report the physical and electrical characterization of a series of substitu...
International audienceWe report the physical and electrical characterization of a series of substitu...
Quasi-solid-state lithium metal batteries are considered as one of the most promising energy storage...
Herein, we developed a high-performance lithium ion conducting hybrid solid electrolyte, consisted o...
Herein, we developed a high-performance lithium ion conducting hybrid solid electrolyte, consisted o...
Rechargeable lithium batteries are attractive power sources for electronic devices and are being agg...
One of the crucial challenge for developing high safety and high voltage lithium ion batteries is to...
Concerning the safety aspects of high-voltage Li-ion batteries, a pelletized hybrid solid electrolyt...
All-solid-state batteries (SSBs) offer an alternative to current state of the art lithium-ion batter...
Lithium-ion batteries are popular energy storage devices due to their high energy density. Solid ele...
Compared to conventional organic liquid electrolyte, solid-state polymer electrolytes are extensivel...
The potential for metallic lithium batteries that exhibit high specific capacities has stimulated a ...
The potential for metallic lithium batteries that exhibit high specific capacities has stimulated a ...
International audienceWe report the physical and electrical characterization of a series of substitu...
International audienceWe report the physical and electrical characterization of a series of substitu...
International audienceWe report the physical and electrical characterization of a series of substitu...
International audienceWe report the physical and electrical characterization of a series of substitu...
Quasi-solid-state lithium metal batteries are considered as one of the most promising energy storage...
Herein, we developed a high-performance lithium ion conducting hybrid solid electrolyte, consisted o...
Herein, we developed a high-performance lithium ion conducting hybrid solid electrolyte, consisted o...
Rechargeable lithium batteries are attractive power sources for electronic devices and are being agg...
One of the crucial challenge for developing high safety and high voltage lithium ion batteries is to...
Concerning the safety aspects of high-voltage Li-ion batteries, a pelletized hybrid solid electrolyt...
All-solid-state batteries (SSBs) offer an alternative to current state of the art lithium-ion batter...
Lithium-ion batteries are popular energy storage devices due to their high energy density. Solid ele...
Compared to conventional organic liquid electrolyte, solid-state polymer electrolytes are extensivel...
The potential for metallic lithium batteries that exhibit high specific capacities has stimulated a ...
The potential for metallic lithium batteries that exhibit high specific capacities has stimulated a ...
International audienceWe report the physical and electrical characterization of a series of substitu...
International audienceWe report the physical and electrical characterization of a series of substitu...
International audienceWe report the physical and electrical characterization of a series of substitu...
International audienceWe report the physical and electrical characterization of a series of substitu...
Quasi-solid-state lithium metal batteries are considered as one of the most promising energy storage...