IP Library › Granted Patent US 11,840,456
Granted Patent B2
US 11,840,456 · App. 17/502,227 · Granted Dec 12, 2023

Rare earth compound particles and method for producing rare earth oxide particles

Inventors: Hironori Suzuki (Echizen, JP); Kazuhiro Wataya (Echizen, JP)
Assignee: SHIN-ETSU CHEMICAL CO., LTD.
C01F17/247C01P2004/03C01P2004/51
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Quick Facts
Patent No.
US 11,840,456
App. No.
17/502,227
Granted
Dec 12, 2023
Kind
B2
Abstract

An aqueous solution containing ions of one or more rare earth elements selected from the group consisting of Y, Nd, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu, hydrogen peroxide, urea, and polyvinylpyrrolidone is heated at a temperature of 80° C. or higher and equal to or lower than a boiling point of the aqueous solution to produce particles of a rare earth compound under a reaction between a hydrolysis product of urea and the ions of the rare earth elements. Furthermore, the particles of the rare earth compound are solid-liquid separated from the aqueous solution, and the obtained solid content is baked at a temperature of 600° C. or higher in an atmosphere containing oxygen to produce rare earth oxide particles.

Claims (16)

1. A method for producing particles of a rare earth compound comprising the step of heating an aqueous solution containing ions of one or more rare earth elements selected from the group consisting of Y, Nd, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu, hydrogen peroxide, and urea at a temperature of 80° C. or higher and equal to or lower than a boiling point of the aqueous solution to prepare the particles of the rare earth compound under a reaction between a hydrolysis product of urea and the ions of the rare earth elements,

wherein the aqueous solution further contains polyvinylpyrrolidone.

2. The production method according to claim 1 , wherein the rare earth compound is a basic carbonate of a rare earth element.

3. A method for producing particles of a rare earth compound comprising:

a first step of heating an aqueous solution containing ions of one or more rare earth elements selected from the group consisting of Y, Nd, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu, hydrogen peroxide, and urea at a temperature of 80° C. or higher and equal to or lower than a boiling point of the aqueous solution to prepare the particles of the rare earth compound under a reaction between a hydrolysis product of urea and the ions of the rare earth elements,

wherein the aqueous solution further contains polyvinylpyrrolidone,

a second step of solid-liquid separating the particles of the rare earth compound prepared in the first step to obtain a solid content; and

a third step of baking the solid content at a temperature of 600° C. or higher in an atmosphere containing oxygen.

4. The production method according to claim 3 , wherein rare earth oxide particles having a volume-based particle size distribution median diameter (D50) of 0.05 μm or more and 0.3 μm or less measured by a centrifugal sedimentation method are produced.

5. A method for producing particles of a rare earth compound comprising:

a first step of heating an aqueous solution containing ions of one or more rare earth elements selected from the group consisting of Y, Nd, Gd, Tb, Dy, Ho, Er, Tm, Yb, and Lu, hydrogen peroxide, and urea at a temperature of 80° C. or higher and equal to or lower than a boiling point of the aqueous solution to prepare the particles of the rare earth compound under a reaction between a hydrolysis product of urea and the ions of the rare earth elements,

wherein the aqueous solution further contains polyvinylpyrrolidone,

wherein the rare earth compound is a basic carbonate of a rare earth element

a second step of solid-liquid separating the particles of the rare earth compound prepared in the first step to obtain a solid content; and

a third step of baking the solid content at a temperature of 600° C. or higher in an atmosphere containing oxygen.

6. The production method according to claim 5 , wherein rare earth oxide particles having a volume-based particle size distribution median diameter (D50) of 0.05 μm or more and 0.3 μm or less measured by a centrifugal sedimentation method are produced.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 15, 2021
From: SUZUKI, HIRONORI; WATAYA, KAZUHIRO
To: SHIN-ETSU CHEMICAL CO., LTD.
Reel/Frame 057806/0014 →
Priority Claims (1)
JP 2020-175721 · Oct 20, 2020 · national
Continuity (1)
Related Publication 20220119271A1 · Apr 21, 2022