In this work we develop nanostructured electrospun separators for lithium batteries made of Poly(vinylidene fluoride) (PVDF) loaded with either fumed silica or tin oxide nanoparticles. The use of high porosity and wide surface area material allows a massive electrolyte uptake; oxide nanoparticles are added to the polymer to increase mechanical, thermal and electrical properties of the separator with the aim to fulfil capacity and safety requirements of lithium batteries. Fiber morphology was observed by SEM and the presence of the additives inside the material was revealed by energy dissipation spectroscopy (EDS). Tensile tests, thermogravimetric measurements and differential scanning calorimetry are carried out to study mechanical properti...
Nanofibers produced by electrospinning show an interlaced and highly porous structure with a large s...
Nanofibrous separators use in lithium-ion batteries brings many advantages. In contrast to contempor...
In an effort to improve thermal shrinkage and electrochemical performance of a separator for a lithi...
In this work we develop nanostructured electrospun separators for lithium batteries made of Poly(vin...
In this work we develop nanostructured electrospun separators for lithium batteries made of Poly(vin...
Innovative separators able to improve the performance and safety of Li-ion batteries are under inves...
Innovative separators able to improve the performance and safety of Li-ion batteries are under inves...
open5noThis study reports the fabrication and characterization of poly(ethylene oxide) (PEO) and pol...
This study reports the fabrication and characterization of poly(ethylene oxide) (PEO) and poly(vinyl...
Innovative separators able to improve the performance and safety of Li-ion batteries are under inves...
Innovative separators able to improve the performance and safety of Li-ion batteries are under inves...
This study reports the fabrication and characterization of poly(ethylene oxide) (PEO) and poly(vinyl...
This study reports the fabrication and characterization of poly(ethylene oxide) (PEO) and poly(vinyl...
Safety concerns related to the use of potentially explosive, liquid organic electrolytes in commerci...
Evaporation-induced, close-packed silica (SiO 2) nanoparticle-embedded polyethylene terephthalate (P...
Nanofibers produced by electrospinning show an interlaced and highly porous structure with a large s...
Nanofibrous separators use in lithium-ion batteries brings many advantages. In contrast to contempor...
In an effort to improve thermal shrinkage and electrochemical performance of a separator for a lithi...
In this work we develop nanostructured electrospun separators for lithium batteries made of Poly(vin...
In this work we develop nanostructured electrospun separators for lithium batteries made of Poly(vin...
Innovative separators able to improve the performance and safety of Li-ion batteries are under inves...
Innovative separators able to improve the performance and safety of Li-ion batteries are under inves...
open5noThis study reports the fabrication and characterization of poly(ethylene oxide) (PEO) and pol...
This study reports the fabrication and characterization of poly(ethylene oxide) (PEO) and poly(vinyl...
Innovative separators able to improve the performance and safety of Li-ion batteries are under inves...
Innovative separators able to improve the performance and safety of Li-ion batteries are under inves...
This study reports the fabrication and characterization of poly(ethylene oxide) (PEO) and poly(vinyl...
This study reports the fabrication and characterization of poly(ethylene oxide) (PEO) and poly(vinyl...
Safety concerns related to the use of potentially explosive, liquid organic electrolytes in commerci...
Evaporation-induced, close-packed silica (SiO 2) nanoparticle-embedded polyethylene terephthalate (P...
Nanofibers produced by electrospinning show an interlaced and highly porous structure with a large s...
Nanofibrous separators use in lithium-ion batteries brings many advantages. In contrast to contempor...
In an effort to improve thermal shrinkage and electrochemical performance of a separator for a lithi...