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LLTO-containing heterogeneous composite electrolyte with a stable interface enabling solid-state lithium metal batteries
LLTO-containing heterogeneous composite electrolyte with a stable interface enabling solid-state lithium metal batteries The interaction between Li0.33La0.56TiO3 (LLTO) and metallic lithium leads to severe interfacial instability of LLTO-containing solid-state electrolytes with lithium metal anode.
A hybrid solid electrolyte Li0.33La0.557TiO3/poly(acylonitrile) membrane infiltrated with a succinonitrile-based electrolyte for solid state lithium-ion batteries
A hybrid solid electrolyte Li0.33La0.557TiO3/poly(acylonitrile) membrane infiltrated with a succinonitrile-based electrolyte for solid state lithium-ion batteries† Solid state lithium-ion batteries are considered as one of the most promising next-generation technologies for energy storage. However, the low ionic conductivity of solid electrolytes and interfacial compatibility issues remain huge challenges to solid state lithium-ion batteries.
A hybrid solid electrolyte of Li0.33La0.557TiO3/poly(acylonitrile) membrane infiltrated with succinonitrile-based electrolyte for solid state lithium-ion batteries
A hybrid solid electrolyte of Li0.33La0.557TiO3/poly(acylonitrile) membrane infiltrated with succinonitrile-based electrolyte for solid state lithium-ion batteries Jiaying Bi, Daobin Mu, Borong Wu, Jiale Fu, Hao Yang, Ge Mu, Ling Zhang and Feng Wu Abstract Solid state lithium-ion batteries are considered as one of the most promising next-generation technologies for energy storage.
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