This review article focuses on the methods to solve the critical issue of reduction in NASICON-type solid electrolytes such as Li1+xAlxTi2 x(PO4)3 and Li1+xAlxGe2 x(PO4)3 by Li metal. The formation of a reduced phase on the surface of solid electrolytes degrades ionic conductivity. Numerous research efforts were devoted to resolve this issue by depositing various types of artificial protecting layers on the materials’ surface. Inorganics such as lithium salts, oxides, and composites, solid polymer electrolytes, as well as hybrid composite membranes have been applied to protect the material from the side reaction by lithium metal. Besides prevention, these layers improved the interface between solid electrolyte and electrode. Particul...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
Solid-state batteries (SSBs) using lithium (Li) metal anodes and solid-state electrolytes (SSEs) can...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Abstract The replacement of liquid organic electrolytes with solid‐state electrolytes (SSEs) is a fe...
Compared with traditional lithium-ion batteries, all-solid-state lithium-metal batteries (ASS LMBs) ...
Due to the degradation of lithium-metal anode, lithium dendritic growth and other challenging proble...
All solid-state batteries based on NASICON-type LiM2(PO4)3 electrolyte phases are highly promising o...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
This project aims to help facilitate the step change in battery energy density (per volume) needed f...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
Solid-state batteries (SSBs) using lithium (Li) metal anodes and solid-state electrolytes (SSEs) can...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...
Abstract The replacement of liquid organic electrolytes with solid‐state electrolytes (SSEs) is a fe...
Compared with traditional lithium-ion batteries, all-solid-state lithium-metal batteries (ASS LMBs) ...
Due to the degradation of lithium-metal anode, lithium dendritic growth and other challenging proble...
All solid-state batteries based on NASICON-type LiM2(PO4)3 electrolyte phases are highly promising o...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
This project aims to help facilitate the step change in battery energy density (per volume) needed f...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Hybrid solid-state batteries using a bilayer of ceramic and solid polymer electrolytes may offer adv...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
Solid-state batteries (SSBs) using lithium (Li) metal anodes and solid-state electrolytes (SSEs) can...
Lithium-ion batteries (LIB) have been widely applied to portable electronic devices in the past deca...