IP Library Patent Application 18289477
Patent Application
App. No. 18/289,477

LITHIUM NIOBATE SOLUTION AND METHOD FOR PRODUCING SAME

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Patent No.
US None
App. No.
18/289,477
Abstract

A lithium niobate solution is provided containing lithium niobate having a molar ratio of lithium and niobium Li/Nb of 0.8 or more and 2.0 or less and ammonium ions, and the particle size (D50) of the lithium niobate in the lithium niobate solution according to dynamic light scattering is 100 nm or less. A method for producing a lithium niobate solution is also provided and has a step of producing an acidic niobium solution containing niobium, a step of obtaining a precipitate slurry containing niobium by inverse neutralization by adding the acidic niobium solution to ammonia water and a step of obtaining a lithium niobate solution by maintaining a mixture of the precipitate slurry containing niobium and lithium hydroxide at 20° C. to 100° C. with stirring.

Claims (33)

1 - 13 . (canceled)

14 . A lithium niobate solution comprising:

lithium niobate having a molar ratio of lithium and niobium Li/Nb of 0.8 or more and 2.0 or less; and

ammonium ions,

wherein the particle size (D50) of the lithium niobate in the lithium niobate solution according to dynamic light scattering is 100 nm or less.

15 . The lithium niobate solution according to claim 14 , wherein hydrogen peroxide is not contained in the lithium niobate solution.

16 . The lithium niobate solution according to claim 14 , wherein the lithium niobate solution is an aqueous solution.

17 . The lithium niobate solution according to claim 15 , wherein the lithium niobate solution is an aqueous solution.

18 . The lithium niobate solution according to claim 14 , wherein the lithium niobate concentration of the lithium niobate solution is 0.1 to 30% by mass.

19 . The lithium niobate solution according claim 18 , wherein the lithium niobate concentration of the lithium niobate solution is 5 to 20% by mass.

20 . The lithium niobate solution according to claim 14 , wherein the particle size (D50) of the lithium niobate is 30 nm or less.

21 . The lithium niobate solution according claim 18 , wherein the particle size (D50) of the lithium niobate is 30 nm or less.

22 . The lithium niobate solution according claim 19 , wherein the particle size (D50) of the lithium niobate is 10 nm or less.

23 . A method for producing a lithium niobate solution comprising:

a step of producing an acidic niobium solution containing niobium;

a step of obtaining a precipitate slurry containing the niobium by inverse neutralization by adding the acidic niobium solution to ammonia water; and

a step of obtaining a lithium niobate solution by maintaining a mixture of the obtained precipitate slurry containing the niobium and lithium hydroxide at 20° C. to 100° C. with stirring.

24 . The method for producing a lithium niobate solution according to claim 23 , wherein

the acidic niobium solution is an acidic niobium solution containing fluoride ions obtained by solvent extraction of a solution in which niobium is dissolved in an acidic solution containing hydrofluoric acid, and

that the method has a step of obtaining a niobium-containing precipitate by removing fluoride ions from the precipitate slurry containing the niobium,

a step of obtaining a lithium niobate solution by maintaining a mixture of the obtained niobium-containing precipitate and lithium hydroxide at 20° C. to 100° C. with stirring, and

a step of leaving the lithium niobate solution to cool to room temperature.

25 . A method for producing a cathode active material for a lithium-ion secondary cell coated with lithium niobate comprising:

a step of producing a cathode active material slurry for a cell containing lithium niobate by mixing the lithium niobate solution according to claim 14 , a cathode active material and an aqueous lithium hydroxide solution; and

a step of drying the cathode active material slurry for a cell containing the lithium niobate.

26 . The lithium niobate solution according to claim 15 , wherein the lithium niobate concentration of the lithium niobate solution is 0.1 to 30% by mass.

27 . The lithium niobate solution according claim 26 , wherein the lithium niobate concentration of the lithium niobate solution is 5 to 20% by mass.

28 . The lithium niobate solution according to claim 15 , wherein the particle size (D50) of the lithium niobate is 30 nm or less.

29 . The lithium niobate solution according claim 26 , wherein the particle size (D50) of the lithium niobate is 30 nm or less.

30 . The lithium niobate solution according claim 27 , wherein the particle size (D50) of the lithium niobate is 10 nm or less.

31 . A method for producing a cathode active material for a lithium-ion secondary cell coated with lithium niobate comprising:

a step of producing a cathode active material slurry for a cell containing lithium niobate by mixing the lithium niobate solution according to claim 15 , a cathode active material and an aqueous lithium hydroxide solution; and

a step of drying the cathode active material slurry for a cell containing the lithium niobate.

Assignments (2)
CHANGE OF NAME Recorded Nov 14, 2025
From: MITSUI MINING & SMELTING CO., LTD.
To: MITSUI KINZOKU COMPANY, LIMITED
Reel/Frame 073574/0634 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2023
From: MOTONO, RYUJI; HARA, SYUHEI; ARAKAWA, DAIKI
To: MITSUI MINING & SMELTING CO., LTD.
Reel/Frame 065873/0697 →