Nanocomposites of a lithium ion conductor Li1.3Al 0.3Ti1.7(PO4)3 and electrode materials (TiO2 and FePO4) were prepared to investigate interfacial structure and ionic conductivity at the interface between the solid electrolyte and electrode materials. It was revealed that lithium ions in the solid electrolyte were attracted to the cathode materials with increasing electrode potential, which increases lithium vacancies in the solid electrolyte. For the FePO4 containing composites, due to the high electrode potential, lithium transfer across the interface and ionic conduction through the cathode materials was remarkable. The results suggest that severe lithium depletion occurs and interfacial resistance is large at the interface of high ionic...
AbstractThe roles of interfaces in either blocking or enhancing ionic conduction in various types of...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Nanocomposites of lithium ion conductors (Li2SiO3 and Li1.3Al0.3Ti1.7(PO4)3) and electrode materials...
All solid state batteries are attracting interests as next generation energy storage devices. Howeve...
Solid state lithium batteries are widely accepted as promising candidates for next generation of var...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Interfaces are ubiquitous in Li-ion battery electrodes, occurring across compositional gradients, ac...
Abstract Security risks of flammability and explosion represent major problems with the use of conve...
The large interfacial resistance between electrolyte and electrodes poses a significant roadblock fo...
High-performance solid-state energy storage and conversion devices are a vital technology component ...
The interface between cathode and electrolyte is a significant source of large interfacial resistanc...
Compared with traditional lithium-ion batteries, all-solid-state lithium-metal batteries (ASS LMBs) ...
Li-garnets are promising inorganic ceramic solid electrolytes for lithium metal batteries, showing g...
AbstractThe roles of interfaces in either blocking or enhancing ionic conduction in various types of...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Nanocomposites of lithium ion conductors (Li2SiO3 and Li1.3Al0.3Ti1.7(PO4)3) and electrode materials...
All solid state batteries are attracting interests as next generation energy storage devices. Howeve...
Solid state lithium batteries are widely accepted as promising candidates for next generation of var...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Interfaces are ubiquitous in Li-ion battery electrodes, occurring across compositional gradients, ac...
Abstract Security risks of flammability and explosion represent major problems with the use of conve...
The large interfacial resistance between electrolyte and electrodes poses a significant roadblock fo...
High-performance solid-state energy storage and conversion devices are a vital technology component ...
The interface between cathode and electrolyte is a significant source of large interfacial resistanc...
Compared with traditional lithium-ion batteries, all-solid-state lithium-metal batteries (ASS LMBs) ...
Li-garnets are promising inorganic ceramic solid electrolytes for lithium metal batteries, showing g...
AbstractThe roles of interfaces in either blocking or enhancing ionic conduction in various types of...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...