Here we demonstrate that by regulating the mobility of classic −EO− based backbones, an innovative polymer electrolyte system can be architectured. This polymer electrolyte allows the construction of all solid lithium-based polymer cells having outstanding cycling behaviour in terms of rate capability and stability over a wide range of operating temperatures. Polymer electrolytes are obtained by UV-induced (co)polymerization, which promotes an effective interlinking between the polyethylene oxide (PEO) chains plasticized by tetraglyme at various lithium salt concentrations. The polymer networks exhibit sterling mechanical robustness, high flexibility, homogeneous and highly amorphous characteristics. Ambient temperature ionic conductivity v...
A wide interest is mounting in the field of polymer electrolytes, due to their application in energy...
Ion-conducting, self-standing and tack-free poly(ethylene oxide)-based polymer electrolytes are succ...
Ion-conducting, self-standing and tack-free poly(ethylene oxide)-based polymer electrolytes are succ...
Here we demonstrate that by regulating the mobility of classic −EO− based backbones, an innovative p...
We all desire a long-lasting, non-explosive, flexible and small lithium-ion battery (LIB) for our po...
Profoundly ion conducting, self-standing and tack-free ethylene oxide based polymer electrolytes are...
We all desire a long-lasting, non-explosive, flexible and small lithium-ion battery (LIB) for our po...
International audienceIn this paper, we develop a facile UV-derived in-situ dual-reaction to prepare...
International audienceIn this paper, we develop a facile UV-derived in-situ dual-reaction to prepare...
International audienceIn this paper, we develop a facile UV-derived in-situ dual-reaction to prepare...
International audienceIn this paper, we develop a facile UV-derived in-situ dual-reaction to prepare...
Profoundly ion conducting, self-standing and tack-free ethylene oxide based polymer electrolytes are...
To fulfill our needs, we all desire a long-lasting, non-explosive and small lithium-ion battery (LIB...
To fulfill our needs, we all desire a long-lasting, non-explosive and small lithium-ion battery (LIB...
Polymer electrolytes exhibit unique advantages such as mechanical integrity, intimate electrode/elec...
A wide interest is mounting in the field of polymer electrolytes, due to their application in energy...
Ion-conducting, self-standing and tack-free poly(ethylene oxide)-based polymer electrolytes are succ...
Ion-conducting, self-standing and tack-free poly(ethylene oxide)-based polymer electrolytes are succ...
Here we demonstrate that by regulating the mobility of classic −EO− based backbones, an innovative p...
We all desire a long-lasting, non-explosive, flexible and small lithium-ion battery (LIB) for our po...
Profoundly ion conducting, self-standing and tack-free ethylene oxide based polymer electrolytes are...
We all desire a long-lasting, non-explosive, flexible and small lithium-ion battery (LIB) for our po...
International audienceIn this paper, we develop a facile UV-derived in-situ dual-reaction to prepare...
International audienceIn this paper, we develop a facile UV-derived in-situ dual-reaction to prepare...
International audienceIn this paper, we develop a facile UV-derived in-situ dual-reaction to prepare...
International audienceIn this paper, we develop a facile UV-derived in-situ dual-reaction to prepare...
Profoundly ion conducting, self-standing and tack-free ethylene oxide based polymer electrolytes are...
To fulfill our needs, we all desire a long-lasting, non-explosive and small lithium-ion battery (LIB...
To fulfill our needs, we all desire a long-lasting, non-explosive and small lithium-ion battery (LIB...
Polymer electrolytes exhibit unique advantages such as mechanical integrity, intimate electrode/elec...
A wide interest is mounting in the field of polymer electrolytes, due to their application in energy...
Ion-conducting, self-standing and tack-free poly(ethylene oxide)-based polymer electrolytes are succ...
Ion-conducting, self-standing and tack-free poly(ethylene oxide)-based polymer electrolytes are succ...