INCREASING IONIC CONDUCTIVITY OF LiTi2(PS4)3 BY AL DOPING

US2019185337A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2019185337-A1
Application numberUS-201616326117-A
CountryUS
Kind codeA1
Filing dateOct 28, 2016
Priority dateOct 28, 2016
Publication dateJun 20, 2019
Grant date

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  1. Title

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A compound represented by the general formula Li1+xAlxTi2-x(PS4)3, wherein 0.1≤x≤0.75. The above compound has been found to have high ionic conductivity. Also, the use of the compound as a solid electrolyte, in particular in an all solid-state lithium battery.

First claim

Opening claim text (preview).

1 . Compound represented by the general formula Li 1+x Al x Ti 2-x (PS 4 ) 3 , wherein 0.1≤x≤0.75. 2 . Compound according to claim 1 , wherein 0.3≤x≤0.6. 3 . Compound according to claim 1 , wherein 0.4≤x≤0.6. 4 . Compound according to claim 1 , wherein x=0.5. 5 . Compound according to claim 1 , having peaks in positions of 2θ=15.08° (±0.50°), 15.28° (±0.50°), 15.92° (±0.50°), 17.5° (±0.50°), 18.24° (±0.50°), 20.30° (±0.50°), 23.44° (±0.50°), 24.48° (±0.50°), and 26.66° (±0.50)° in an X-ray diffraction measurement using a CuKα line. 6 . Method for preparing the compound according to claim 1 , comprising the steps of: (a) providing a mixture of lithium sulfide Li 2 S, phosphorus sulfide P 2 S 5 , aluminum sulfide Al 2 S 3 and titanium sulfide TiS 2 ; (b) subjecting the mixture prepared in step (a) to a preliminary reaction step through mechanical milling or melt-quenching to produce an intermediate amorphous sulfide mixture; (c) subjecting the mixture prepared in (b) to a heat treatment step at a maximum plateau temperature of at least 350° C. and less than 500° C. 7 . Method according to claim 6 , further comprising the following steps of surface treatment: (d) compressing the compound provided in step (c) to form a compressed powder layer; and (e) sintering the compound obtained as a compressed powder layer in step (d) at a temperature of at least 200° C. and at most 400° C. 8 . A method comprising including the compound according to claim 1 as a solid electrolyte in an all-solid-state battery system. 9 . A method comprising including the compound according to claim 1 as a solid electrolyte in an all solid-state lithium battery. 10 . Solid-state battery comprising the compound according to claim 1 as a solid electrolyte. 11 . All-solid state lithium battery comprising the following elements: a positive electrode active material layer; a solid electrolyte layer; a negative electrode active material layer, wherein the solid electrolyte layer contains the compound according to claim 1 .

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Classifications

  • Li-accumulators · CPC title

  • Oxygenated metallic salts or polyanionic structures, e.g. borates, phosphates, silicates, olivines · CPC title

  • Inorganic electrolyte · CPC title

  • Solid materials · CPC title

  • C01G23/007Primary

    Titanium sulfides (C01G23/001 takes precedence) · CPC title

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What does patent US2019185337A1 cover?
A compound represented by the general formula Li1+xAlxTi2-x(PS4)3, wherein 0.1≤x≤0.75. The above compound has been found to have high ionic conductivity. Also, the use of the compound as a solid electrolyte, in particular in an all solid-state lithium battery.
Who is the assignee on this patent?
Toyota Motor Europe
What technology area does this patent fall under?
Primary CPC classification C01G23/007. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Thu Jun 20 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).