The ever-increasing interest in sustainable mobility is driving the development of innovative batteries with increased energy densities relative to currently commercialized lithium-ion batteries. All-solid-state batteries using 5 V-class positive electrodes are one of those batteries due to their larger volumetric energy density and their superior durability. However, their power density tends to be limited by the large charge transfer resistance at their electrolyte/5 V-electrode interfaces; one explanation for this is the development of significant Li+ deficient layers at the interface. Here we propose a new interlayer material that would effectively resolve the Li+ deficient layers. The partially-crystallized Li56Nb22Ta22 oxide was ident...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
The demand for batteries that can meet the high energy density and reliability needs of the future i...
In order to put oxide-based solid-state batteries into practice (Figure 1), systematic investigation...
Lithium-ion batteries (LIBs) are critical for the development of electric vehicles (EVs) because of ...
All-solid-state lithium batteries (ASSLBs) have gained substantial attention owing to their excellen...
Thesis (Ph.D.)--University of Washington, 2019All Solid-state Batteries (ASSBs), enabled by solid el...
All-solid-state batteries (ASSBs), in which solid superionic conductors are used as electrolytes to ...
The EV Everywhere Grand Challenge requires a breakthrough in energy storage technology. State-of-the...
Solid-state lithium batteries (SSLiBs) could enable improved safety and higher energy density compar...
The substitution of an organic liquid electrolyte with lithium-conducting solid materials is a promi...
Since its introduction in the consumer market at the beginning of 1990s by Sony Corporation ‘Li-ion ...
Li-garnets are promising inorganic ceramic solid electrolytes for lithium metal batteries, showing g...
Solid-state batteries are a proposed route to safely achieving high energy densities, yet this archi...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Since their commercialization Li-ion batteries have relied on the use of layered oxides (LiMO2) as p...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
The demand for batteries that can meet the high energy density and reliability needs of the future i...
In order to put oxide-based solid-state batteries into practice (Figure 1), systematic investigation...
Lithium-ion batteries (LIBs) are critical for the development of electric vehicles (EVs) because of ...
All-solid-state lithium batteries (ASSLBs) have gained substantial attention owing to their excellen...
Thesis (Ph.D.)--University of Washington, 2019All Solid-state Batteries (ASSBs), enabled by solid el...
All-solid-state batteries (ASSBs), in which solid superionic conductors are used as electrolytes to ...
The EV Everywhere Grand Challenge requires a breakthrough in energy storage technology. State-of-the...
Solid-state lithium batteries (SSLiBs) could enable improved safety and higher energy density compar...
The substitution of an organic liquid electrolyte with lithium-conducting solid materials is a promi...
Since its introduction in the consumer market at the beginning of 1990s by Sony Corporation ‘Li-ion ...
Li-garnets are promising inorganic ceramic solid electrolytes for lithium metal batteries, showing g...
Solid-state batteries are a proposed route to safely achieving high energy densities, yet this archi...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Since their commercialization Li-ion batteries have relied on the use of layered oxides (LiMO2) as p...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
The demand for batteries that can meet the high energy density and reliability needs of the future i...
In order to put oxide-based solid-state batteries into practice (Figure 1), systematic investigation...