A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to designing high-performance composite solid-state electrolytes for all-solid-state batteries. By considering as a case study a composite electrolyte constituted by Li+ conductive Ga3+ doped-Li7La3Zr2O12 (LLZO) garnet fillers embedded within a poly(ethylene oxide) and lithium bis(trifluoromethanesulfonyl) imide polymer matrix (PEO(LiTFSI)), we investigate Li+ interfacial dynamics at conditions of high polymer confinement, with large filler particles in a fully amorphous polymer phase. Such confinement scenario is aimed to capture the conditions near the percolation threshold, at which conductivity enhancement is often reported. Using molecular...
As the demand for high performance lithium-ion batteries grows, materials research isneeded to provi...
The application of flexible, robust, and low cost solid polymer electrolytes in next generation all ...
The ionic transport in solid-state composite electrolytes based on poly(trimethylene carbonate) (PTM...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
Unlocking the full potential of solid-state electrolytes (SSEs) is key to enabling safer and more-en...
The successful development of all-solid-state batteries will provide solutions for many problems fac...
The predictive design of flexible and solvent-free polymer electrolytes for solid-state batteries re...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
The Li ion conducting garnet Li7La3Zr2O12 (LLZO) has attracted substantial interest as a solid elect...
Polymer electrolytes are intensely investigated for use as solid electrolytes in next generation lit...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
The ionic transport in solid-state composite electrolytes based on poly(trimethylene carbonate) (PTM...
The application of flexible, robust, and low cost solid polymer electrolytes in next generation all ...
As the demand for high performance lithium-ion batteries grows, materials research isneeded to provi...
The application of flexible, robust, and low cost solid polymer electrolytes in next generation all ...
The ionic transport in solid-state composite electrolytes based on poly(trimethylene carbonate) (PTM...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
Unlocking the full potential of solid-state electrolytes (SSEs) is key to enabling safer and more-en...
The successful development of all-solid-state batteries will provide solutions for many problems fac...
The predictive design of flexible and solvent-free polymer electrolytes for solid-state batteries re...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
The Li ion conducting garnet Li7La3Zr2O12 (LLZO) has attracted substantial interest as a solid elect...
Polymer electrolytes are intensely investigated for use as solid electrolytes in next generation lit...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
The ionic transport in solid-state composite electrolytes based on poly(trimethylene carbonate) (PTM...
The application of flexible, robust, and low cost solid polymer electrolytes in next generation all ...
As the demand for high performance lithium-ion batteries grows, materials research isneeded to provi...
The application of flexible, robust, and low cost solid polymer electrolytes in next generation all ...
The ionic transport in solid-state composite electrolytes based on poly(trimethylene carbonate) (PTM...