The use of lithium metal as the anode for Lithium Metal Batteries (LMB) requires having solid or quasi-solid electrolytes able to block dendrites formation during cell cycling. Here we reported on a hybrid electrolyte membrane based on nanostructured yttria-stabilized-zirconia, sintered by means of High Pressure-Field Assisted Sintering Technique (HP-FAST) in order to retain proper nano-porosity, and activated with a standard LiPF6-EC-DMC solution. By a thorough physico-chemical and functional characterization, we demonstrated that the liquid is effectively nano-confined in the ceramic membrane, and the resulting quasi-solid electrolyte is non-flammable. A remarkable conductivity value of 0.91 mS cm−1 was observed at room temperature, with ...
All-solid-state lithium batteries (ASSLBs) with enhanced safety are considered one of the most promi...
We report a unique, highly conductive, dendrite inhibited, solid-state polymer electrolyte platform ...
Li6.4La3Zr1.4Ta0.6O12 (LLZTO), a typical oxidizing ceramic solid electrolyte of excellent lithium-io...
The use of lithium metal as the anode for Lithium Metal Batteries (LMB) requires having solid or qua...
Rechargeable lithium (Li) metal batteries are considered the most promising of Li-based energy stora...
Rechargeable lithium batteries are attractive power sources for electronic devices and are being agg...
The potential of all-solid-state batteries with lithium metal anodes to be safer, more energy dense ...
Due to the degradation of lithium-metal anode, lithium dendritic growth and other challenging proble...
International audienceTo boost the energy density of lithium-based accumulators, two levers are comm...
International audienceTo boost the energy density of lithium-based accumulators, two levers are comm...
The growth and proliferation of lithium (Li) dendrites during cell recharge are currently unavoidabl...
International audienceTo boost the energy density of lithium-based accumulators, two levers are comm...
The fast Li+ transportation of “polymer-in-ceramic” electrolytes is highly dependent on the long-ran...
MasterLithium ion batteries (LIBs) have been extensively investigated as one of the popular energy s...
A solid state lithium metal battery based on a lithium garnet material was developed, constructed an...
All-solid-state lithium batteries (ASSLBs) with enhanced safety are considered one of the most promi...
We report a unique, highly conductive, dendrite inhibited, solid-state polymer electrolyte platform ...
Li6.4La3Zr1.4Ta0.6O12 (LLZTO), a typical oxidizing ceramic solid electrolyte of excellent lithium-io...
The use of lithium metal as the anode for Lithium Metal Batteries (LMB) requires having solid or qua...
Rechargeable lithium (Li) metal batteries are considered the most promising of Li-based energy stora...
Rechargeable lithium batteries are attractive power sources for electronic devices and are being agg...
The potential of all-solid-state batteries with lithium metal anodes to be safer, more energy dense ...
Due to the degradation of lithium-metal anode, lithium dendritic growth and other challenging proble...
International audienceTo boost the energy density of lithium-based accumulators, two levers are comm...
International audienceTo boost the energy density of lithium-based accumulators, two levers are comm...
The growth and proliferation of lithium (Li) dendrites during cell recharge are currently unavoidabl...
International audienceTo boost the energy density of lithium-based accumulators, two levers are comm...
The fast Li+ transportation of “polymer-in-ceramic” electrolytes is highly dependent on the long-ran...
MasterLithium ion batteries (LIBs) have been extensively investigated as one of the popular energy s...
A solid state lithium metal battery based on a lithium garnet material was developed, constructed an...
All-solid-state lithium batteries (ASSLBs) with enhanced safety are considered one of the most promi...
We report a unique, highly conductive, dendrite inhibited, solid-state polymer electrolyte platform ...
Li6.4La3Zr1.4Ta0.6O12 (LLZTO), a typical oxidizing ceramic solid electrolyte of excellent lithium-io...