IP Library Granted Patent US 10,513,787
Granted Patent B2
US 10,513,787 · App. 13/993,860 · Granted Dec 24, 2019

Electrode for electrolysis, electrolytic cell and production method for electrode for electrolysis

Inventors: Tsuyoshi Haneda (Tokyo, JP); Kazuyuki Tsuchida (Tokyo, JP); Toshinori Hachiya (Tokyo, JP)
Assignee: ASAHI KASEI KABUSHIKI KAISHA
C25B11/0405C25B1/26C25B11/0484C25B11/0494
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Quick Facts
Patent No.
US 10,513,787
App. No.
13/993,860
Granted
Dec 24, 2019
Kind
B2
Abstract

An electrode for electrolysis includes a conductive substrate, a first layer formed on the conductive substrate, and a second layer formed on the first layer. The first layer contains at least one oxide selected from the group consisting of ruthenium oxide, iridium oxide, and titanium oxide. The second layer contains an alloy of platinum and palladium. The electrode for electrolysis shows low overvoltage and has excellent durability over a long period.

Claims (42)

1. An electrode for electrolysis comprising:

a conductive substrate;

a first layer formed on the conductive substrate; and

a second layer formed on the first layer,

wherein the first layer contains at least one oxide selected from the group consisting of ruthenium oxide, iridium oxide, and titanium oxide, and

the second layer contains

an alloy of platinum and palladium, and

palladium oxide,

wherein a mole percentage of palladium atoms forming an oxide is 13% or less of the total amount of platinum and palladium atoms in the second layer; and

wherein in the second layer, the mole percentage of palladium atoms forming an oxide to the total amount of palladium atoms is 20% or less;

wherein a half width of a diffraction peak of the alloy of which a diffraction angle is 46.29° to 46.71° in a powder X-ray diffraction pattern is 0.5° or less, and

wherein a content of platinum element contained in the second layer is greater than 4 mol and less than 10 mol with respect to 1 mol of palladium element contained in the second layer.

2. The electrode for electrolysis according to claim 1 , wherein the first layer contains ruthenium oxide, iridium oxide, and titanium oxide.

3. The electrode for electrolysis according to claim 2 , wherein the content of iridium oxide contained in the first layer is ⅕ to 3 mol with respect to 1 mol of ruthenium oxide contained in the first layer, and

the content of titanium oxide contained in the first layer is ⅓ to 8 mol with respect to 1 mol of ruthenium oxide contained in the first layer.

4. An electrolytic cell comprising the electrode for electrolysis according to claim 1 .

5. An electrode for electrolysis comprising:

a conductive substrate;

a first layer formed on the conductive substrate; and

a second layer formed on the first layer,

wherein the first layer contains at least one oxide selected from the group consisting of ruthenium oxide, iridium oxide, and titanium oxide, and

the second layer contains

an alloy of platinum and palladium, and

palladium oxide,

wherein a mole percentage of palladium atoms forming an oxide is 13% or less of the total amount of platinum and palladium atoms in the second layer; and

wherein in the second layer, the mole percentage of palladium atoms forming an oxide to the total amount of palladium atoms is 5% to 20%;

wherein a half width of a diffraction peak of the alloy of which a diffraction angle is 46.29° to 46.71° in a powder X-ray diffraction pattern is 0.5° or less, and

wherein a content of platinum element contained in the second layer is greater than 4 mol and less than 10 mol with respect to 1 mol of palladium element contained in the second layer.

6. The electrode for electrolysis according to claim 5 , wherein the first layer contains ruthenium oxide, iridium oxide, and titanium oxide.

7. The electrode for electrolysis according to claim 6 , wherein the content of iridium oxide contained in the first layer is ⅕ to 3 mol with respect to 1 mol of ruthenium oxide contained in the first layer, and

the content of titanium oxide contained in the first layer is ⅓ to 8 mol with respect to 1 mol of ruthenium oxide contained in the first layer.

8. An electrolytic cell comprising the electrode for electrolysis according to claim 5 .

9. The electrode for electrolysis according to claim 1 , wherein the content of iridium oxide contained in the first layer is ⅕ to 3 mol with respect to 1 mol of ruthenium oxide contained in the first layer.

10. The electrode for electrolysis according to claim 1 , the content of titanium oxide contained in the first layer is ⅓ to 8 mol with respect to 1 mol of ruthenium oxide contained in the first layer.

11. The electrode for electrolysis according to claim 1 ,

wherein in the second layer, the mole percentage of palladium atoms forming an oxide to the total amount of palladium atoms is 5% or less.

12. The electrode for electrolysis according to claim 1 ,

wherein in the second layer, the mole percentage of palladium atoms forming an oxide to the total amount of palladium atoms is 20%.

13. The electrode for electrolysis according to claim 1 ,

wherein in the second layer, the mole percentage of palladium atoms forming an oxide to the total amount of palladium atoms is 15%.

14. The electrode for electrolysis according to claim 1 ,

wherein in the second layer, the mole percentage of palladium atoms forming an oxide to the total amount of palladium atoms is 5%.

Assignments (3)
CORRECTIVE ASSIGNMENT TO ADD THE TWO OMITTED CONVEYING PARTIES DATA PREVIOUSLY RECORDED ON REEL 038804 FRAME 0817. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER. Recorded Jun 21, 2016
From: ASAHI KASEI FIBERS CORPORATION; ASAHI KASEI CHEMICALS CORPORATION; ASAHI KASEI E-MATERIALS CORPORATION
To: ASAHI KASEI KABUSHIKI KAISHA
Reel/Frame 039097/0349 →
MERGER Recorded Jun 3, 2016
From: ASAHI KASEI CHEMICALS CORPORATION
To: ASAHI KASEI CORPORATION
Reel/Frame 038804/0817 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2013
From: HANEDA, TSUYOSHI; TSUCHIDA, KAZUYUKI; HACHIYA, TOSHINORI
To: ASAHI KASEI CHEMICALS CORPORATION
Reel/Frame 030972/0661 →
Priority Claims (1)
JP 2010-279634 · Dec 15, 2010 · national
Continuity (1)
Related Publication 20130334037A1 · Dec 19, 2013
Cited By (1)
US 12,448,693