The ionic transport in solid-state composite electrolytes based on poly(trimethylene carbonate) (PTMC) with LiTFSI salt and garnet-type ion-conducting Li6.7Al0.3-La3Zr2O12 (LLZO) ceramic particles is here investigated for a range of different compositions. Positive effects on ionic conductivity have previously been reported for LLZO incorporated into poly(ethylene oxide) (PEO), but the origin of these effects is unclear since the inclusion of particles also affects polymer crystallinity. PTMC is, in contrast to PEO, a fully amorphous polymer, and therefore here chosen for the design of a more straight-forward composite electrolyte (CPE) system to study ionic transport. With LLZO loadings ranging from 5 to 70 wt%, the CPE with 30 wt% of LLZO...
The ionic conductivity of concentrated Lu-polyethylene oxide P(E0) high surface area oxide composite...
All-Solid-State Lithium Batteries (ASSLB) are promising candidates for next generation lithium batte...
All-Solid-State Lithium Batteries (ASSLB) are promising candidates for next generation lithium batte...
The ionic transport in solid-state composite electrolytes based on poly(trimethylene carbonate) (PTM...
Composite electrolytes are widely studied for their potential in realizing improved ionic conductivi...
In this work, we report methods to quantify and minimize the interfacial resistance for Li ion trans...
The Li ion conducting garnet Li7La3Zr2O12 (LLZO) has attracted substantial interest as a solid elect...
Hybrid polymer-ceramic electrolytes with high ceramic loading are currently investigated as a promis...
Hybrid polymer-ceramic electrolytes with high ceramic loading are currently investigated as a promis...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
Current lithium ion batteries are comprised of organic liquid electrolytes - a mixture of lithium sa...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
Solid electrolytes including ceramics and polymers are considered to be the ultimate substitute for ...
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...
The ionic conductivity of concentrated Lu-polyethylene oxide P(E0) high surface area oxide composite...
All-Solid-State Lithium Batteries (ASSLB) are promising candidates for next generation lithium batte...
All-Solid-State Lithium Batteries (ASSLB) are promising candidates for next generation lithium batte...
The ionic transport in solid-state composite electrolytes based on poly(trimethylene carbonate) (PTM...
Composite electrolytes are widely studied for their potential in realizing improved ionic conductivi...
In this work, we report methods to quantify and minimize the interfacial resistance for Li ion trans...
The Li ion conducting garnet Li7La3Zr2O12 (LLZO) has attracted substantial interest as a solid elect...
Hybrid polymer-ceramic electrolytes with high ceramic loading are currently investigated as a promis...
Hybrid polymer-ceramic electrolytes with high ceramic loading are currently investigated as a promis...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
Current lithium ion batteries are comprised of organic liquid electrolytes - a mixture of lithium sa...
A better molecular-level understanding of Li+ diffusion through ceramic/polymer interfaces is key to...
Solid electrolytes including ceramics and polymers are considered to be the ultimate substitute for ...
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...
The ionic conductivity of concentrated Lu-polyethylene oxide P(E0) high surface area oxide composite...
All-Solid-State Lithium Batteries (ASSLB) are promising candidates for next generation lithium batte...
All-Solid-State Lithium Batteries (ASSLB) are promising candidates for next generation lithium batte...