IP Library › Granted Patent US 9,734,953
Granted Patent B2
US 9,734,953 · App. 14/650,617 · Granted Aug 15, 2017

Carbon paste and solid electrolytic capacitor element

Inventors: Kazumi Naito (Tokyo, JP); Shoji Yabe (Tokyo, JP)
Assignee: SHOWA DENKO K.K.
H01G9/025C25D9/02C25D11/02H01G9/0032H01G9/012H01G9/0425H01G9/052H01G9/07H01G9/0036H01G9/15
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Quick Facts
Patent No.
US 9,734,953
App. No.
14/650,617
Granted
Aug 15, 2017
Kind
B2
Abstract

A carbon paste including a carbon powder, a resin, and an oxygen releasing oxidizer. The amount of the oxidizer is 3 to 30 parts by mass based on 100 parts by mass of the total amount of the carbon powder and the resin. A solid electrolytic capacitor element is prepared by a method which includes making a valve-action metal powder sintered to obtain an anode body, electrolytically oxidizing a surface of the anode body to chemically convert the surface into a dielectric layer, electrolytic polymerization to form a semiconductor layer of an electro conductive polymer on the dielectric layer, applying the carbon paste onto the semiconductor layer, and drying and hardening the carbon paste to form a carbon layer.

Claims (22)

1. A carbon paste comprising a carbon powder, a resin, a solvent, and an oxidizer having an oxygen releasing function, wherein the amount of the oxidizer is 3 to 30 parts by mass based on 100 parts by mass of the total amount of the carbon powder and the resin.

2. The carbon paste according to claim 1 , wherein the oxidizer is at least one selected from the group consisting of manganese(VII) compounds, chromium(VI) compounds, halogen acid compounds, persulfuric acid compounds, and organic peroxides.

3. The carbon paste according to claim 1 , wherein the oxidizer is a persulfuric acid compound.

4. The carbon paste according to claim 1 , wherein the solvent comprises 80% by mass or more of water.

5. A solid electrolytic capacitor element at least comprising:

an anode body;

a dielectric layer formed by chemically converting a surface of the anode body;

a semiconductor layer laminated on the dielectric layer; and

a carbon layer formed on the semiconductor layer by drying and hardening a carbon paste comprising a carbon powder, a resin, a solvent, and an oxidizer having an oxygen releasing function, wherein the amount of the oxidizer is 3 to 30 parts by mass based on 100 parts by mass of the total amount of the carbon powder and the resin.

6. The solid electrolytic capacitor element according to claim 5 , wherein the anode body is a sintered compact of a tungsten powder.

7. The solid electrolytic capacitor element according to claim 5 , wherein the oxidizer is at least one selected from the group consisting of manganese(VII) compounds, chromium(VI) compounds, halogen acid compounds, persulfuric acid compounds, and organic peroxides.

8. The solid electrolytic capacitor element according to claim 5 , wherein the oxidizer is a persulfuric acid compound.

9. The solid electrolytic capacitor element according to claim 5 , wherein the solvent comprises 80% by mass or more of water.

10. A method for producing a solid electrolytic capacitor element, the method comprising:

making a valve-action metal powder sintered to obtain an anode body;

electrolytically oxidizing a surface of the anode body to chemically convert the surface into a dielectric layer;

electrolytic polymerization to form a semiconductor layer of an electro conductive polymer on the dielectric layer;

applying a carbon paste onto the semiconductor layer, the carbon paste comprising a carbon powder, a resin, a solvent, and an oxidizer having an oxygen releasing function, wherein the amount of the oxidizer is 3 to 30 parts by mass based on 100 parts by mass of the total amount of the carbon powder and the resin; and

drying and hardening the carbon paste to form a carbon layer.

11. The method according to claim 10 , wherein the oxidizer is at least one selected from the group consisting of manganese (VII) compounds, chromium (VI) compounds, halogen acid compounds, persulfuric acid compounds, and organic peroxides.

12. The method according to claim 10 , wherein the oxidizer is a persulfuric acid compound.

13. The method according to claim 10 , wherein the solvent comprises 80% by mass or more of water.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2015
From: NAITO, KAZUMI; YABE, SHOJI
To: SHOWA DENKO K.K.
Reel/Frame 035808/0096 →
Priority Claims (1)
JP 2012-270032 · Dec 11, 2012 · national
Continuity (1)
Related Publication 20150371785A1 · Dec 24, 2015