IP Library Granted Patent US 10,329,161
Granted Patent B2
US 10,329,161 · App. 15/524,689 · Granted Jun 25, 2019

Halogen-containing tin oxide particles and production method thereof

Inventors: Yoshihiro Yoneda (Saitama, JP); Akira Aoki (Saitama, JP); Kenji Suzuoka (Saitama, JP)
Assignee: MITSUI MINING & SMELTING CO., LTD.
C01G19/02C01G19/00C01G19/006H01M4/925C01P2002/52C01P2002/54C01P2002/60C01P2006/12C01P2006/40H01M2008/1095
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Quick Facts
Patent No.
US 10,329,161
App. No.
15/524,689
Granted
Jun 25, 2019
Kind
B2
Abstract

These halogen-containing tin oxide particles have a BET specific surface area of 25-100 m 2 /g and a crystallite diameter of 8-30 nm. The particles optimally contain 0.01-0.75 mass % halogen. Fluorine is optimally contained as the halogen. Optimally, the particles additionally contain tantalum, niobium, phosphorus, antimony, tungsten, or molybdenum. The volume resistivity is optimally 0.1-1000 Ω·cm.

Claims (14)

1. A method for producing halogen-containing tin oxide particles, comprising:

neutralizing a halogen-containing aqueous solution containing a divalent tin compound with an alkali to form a slurry containing a tin oxide precursor;

oxidizing the precursor; and

performing hydrothermal treatment on the slurry containing the oxidized precursor under a high-temperature-high-pressure condition in which a temperature is 270° C. or higher and pressure is 20 MPa or higher.

2. The method for producing halogen-containing tin oxide particles according to claim 1 , wherein the slurry containing the precursor is mixed with an oxidant to oxidize the precursor.

3. The method for producing halogen-containing tin oxide particles according to claim 2 , wherein the hydrothermal treatment is performed on the slurry containing the oxidized precursor under a subcritical condition or supercritical condition of water.

4. The method for producing halogen-containing tin oxide particles according to claim 1 , wherein the precursor is fired to be oxidized.

5. The method for producing halogen-containing tin oxide particles according to claim 1 , wherein the hydrothermal treatment is performed on the slurry containing the oxidized precursor under a subcritical condition or supercritical condition of water.

6. The method for producing halogen-containing tin oxide particles according to claim 1 , wherein the aqueous solution containing the tin compound is neutralized with the alkali at 30° C. or lower to produce the precursor.

7. A fuel cell electrode catalyst comprising halogen-containing tin oxide particles supporting catalytic metal particles,

wherein the halogen-containing tin oxide particles have a BET specific surface area from 25 m 2 /g to 100 m 2 /g and a crystallite diameter from 8 nm to 30 nm, and the fuel cell electrode catalyst comprises halogen in an amount from 0.01 mass % to 0.75 mass %.

8. A membrane electrode assembly comprising a pair of electrodes including an oxygen electrode and a fuel electrode, the electrodes being arranged on respective surfaces of a solid polymer electrolyte membrane,

wherein the fuel cell electrode catalyst according to claim 7 is contained in at least one of the oxygen electrode and the fuel electrode.

9. A solid polymer electrolyte fuel cell comprising the membrane electrode assembly according to claim 8 , and separators arranged on the respective surfaces of the membrane electrode assembly.

Assignments (2)
CHANGE OF NAME Recorded Mar 31, 2026
From: MITSUI MINING AND SMELTING COMPANY, LIMITED
To: MITSUI KINZOKU COMPANY, LIMITED
Reel/Frame 075357/0342 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2017
From: YONEDA, YOSHIHIRO; AOKI, AKIRA; SUZUOKA, KENJI
To: MITSUI MINING & SMELTING CO., LTD.
Reel/Frame 042251/0701 →
Priority Claims (1)
JP 2014-257249 · Dec 19, 2014 · national
Continuity (1)
Related Publication 20180305217A1 · Oct 25, 2018