The development of all solid-state lithium batteries is reliant on suitable high performance solid state electrolytes. Here, we present the synthesis and ionic conductivity of the In- and Y-doped Li6Hf2O7 materials; Li6+xHf2-xMxO7 (M = In3+, Y3+). Microwave-assisted synthesis was used to give phase pure material after heating for 4 hours at 850°C. The ionic conductivity of the materials is increased with the insertion of interstitial lithium ion within the structure from 0.02 to 0.25 mS cm−1 at 174°C and the activation energy for ionic conduction is lowered from 0.97(4) eV to 0.42(3) eV with respect to the undoped material
Replacing organic liquid electrolytes with nonflammable solid electrolytes can improve safety, offer...
The introduction of solid-state electrolytes (SSEs) into the battery industry has been posed to be a...
The commercialization of the lithium-ion battery (LIB) in 1991 was responsible for the explosion in ...
The development of all solid-state lithium batteries is reliant on suitable high performance solid s...
The development of all solid-state lithium batteries is reliant on suitable high performance solid s...
The focus of this Ph.D. thesis is to understand the lithium ion motion and to enhance the Li-ionic c...
Currently, lithium-ion batteries have been used in many products, such as consumer electronics, ele...
The aim of this thesis work has been focused on the development of Li-rich complex oxide materials a...
The development of high energy density and sustainable all-solid-state lithium batteries relies on t...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
The development of new frameworks for solid electrolytes exhibiting fast Li-ion diffusion is critica...
Lithium-ion batteries (LIBs) employing solid-state electrolytes are considerably safer and might pot...
All-solid-state Li-ion batteries with metallic Li anodes and solid electrolytes could offer superior...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Replacing organic liquid electrolytes with nonflammable solid electrolytes can improve safety, offer...
The introduction of solid-state electrolytes (SSEs) into the battery industry has been posed to be a...
The commercialization of the lithium-ion battery (LIB) in 1991 was responsible for the explosion in ...
The development of all solid-state lithium batteries is reliant on suitable high performance solid s...
The development of all solid-state lithium batteries is reliant on suitable high performance solid s...
The focus of this Ph.D. thesis is to understand the lithium ion motion and to enhance the Li-ionic c...
Currently, lithium-ion batteries have been used in many products, such as consumer electronics, ele...
The aim of this thesis work has been focused on the development of Li-rich complex oxide materials a...
The development of high energy density and sustainable all-solid-state lithium batteries relies on t...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
The development of new frameworks for solid electrolytes exhibiting fast Li-ion diffusion is critica...
Lithium-ion batteries (LIBs) employing solid-state electrolytes are considerably safer and might pot...
All-solid-state Li-ion batteries with metallic Li anodes and solid electrolytes could offer superior...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Replacing organic liquid electrolytes with nonflammable solid electrolytes can improve safety, offer...
The introduction of solid-state electrolytes (SSEs) into the battery industry has been posed to be a...
The commercialization of the lithium-ion battery (LIB) in 1991 was responsible for the explosion in ...