IP Library Patent Application 12933817
Patent Application
App. No. 12/933,817

ELECTRICALLY CONDUCTIVE POLYMER SUSPENSION, ELECTRICALLY CONDUCTIVE POLYMER COMPOSITION, SOLID ELECTROLYTIC CAPACITOR, AND METHOD FOR PRODUCING THE SAME

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Patent No.
US None
App. No.
12/933,817
Abstract

An electrically conductive polymer composition has high electrical conductivity, excellent water resistance, high density, and excellent smoothness. Also disclosed is a solid electrolyte capacitor which is prevented from the reduction in electrical conductivity, has low ESR, and also has excellent reliability. Further disclosed is a method for producing the solid electrolyte capacitor. The electrically conductive polymer composition is produced by removing a dispersion medium from an electrically conductive polymer suspension, wherein the electrically conductive polymer suspension includes: an electrically conductive polymer material including a dopant composed of a polyacid or a salt thereof and an electrically conductive polymer; at least one compound (A) selected from erythritol, xylitol and pentaerythritol; and the dispersion medium.

Claims (26)

1 . An electrically conductive polymer suspension comprising:

an electrically conductive polymer material comprising a dopant composed of a polyacid or a salt thereof and an electrically conductive polymer;

at least one compound (A) selected from erythritol, xylitol and pentaerythritol; and

a dispersion medium.

2 . The electrically conductive polymer suspension according to claim 1 , wherein the electrically conductive polymer material comprises, as the dopant, a polysulfonic acid or a polycarboxylic acid.

3 . The electrically conductive polymer suspension according to claim 2 , wherein the electrically conductive polymer material comprises, as the dopant, a polystyrene sulfonic acid or a polyester sulfonic acid.

4 . The electrically conductive polymer suspension according to claim 1 , wherein the electrically conductive polymer material comprises, as the electrically conductive polymer, a polymer obtained by polymerizing at least one monomer selected from a group consisted of pyrrole, thiophene, aniline and derivatives thereof.

5 . An electrically conductive polymer composition obtained by removing the dispersion medium from the electrically conductive polymer suspension according to claim 1 .

6 . The electrically conductive polymer composition according to claim 5 , wherein removing the dispersion medium is carried out at the melting temperature of the compound (A) or higher.

7 . A solid electrolytic capacitor comprising a solid electrolyte layer comprising the electrically conductive polymer composition according to claim 5 .

8 . The solid electrolytic capacitor according to claim 7 , further comprising an anode body made of a valve action metal, and a dielectric layer formed on the surface of the anode body, wherein the solid electrolyte layer is formed on the dielectric layer.

9 . The solid electrolytic capacitor according to claim 7 , wherein the valve action metal is at least one selected from aluminum, tantalum or niobium.

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

forming a dielectric layer on a surface of an anode body made of a valve action metal; and

forming a first electrically conductive polymer layer by application or impregnation of the electrically conductive polymer suspension according to claim 1 onto the dielectric layer, and by removing the dispersion medium from the electrically conductive polymer suspension.

11 . The method for producing a solid electrolytic capacitor according to claim 10 , further comprising, before forming the first electrically conductive polymer layer,

forming a second electrically conductive polymer layer on the dielectric layer by a chemical oxidation polymerization or an electrolysis polymerization.

12 . The method for producing a solid electrolytic capacitor according to claim 10 , wherein in forming the first electrically conductive polymer layer, removing the dispersion medium is carried out at the melting temperature of the compound (A) or higher.

13 . The method for producing a solid electrolytic capacitor according to claim 12 , wherein the temperature at which the dispersion medium is removed is 150° C. or higher and lower than 270° C.

14 . The method for producing a solid electrolytic capacitor according to claim 10 , wherein an oxidation film covering the valve action metal is formed as the dielectric layer.

15 . The method for producing a solid electrolytic capacitor according to claim 10 , wherein the valve action metal is at least one selected from aluminum, tantalum or niobium.

16 . The electrically conductive polymer suspension according to claim 2 , wherein the electrically conductive polymer material comprises, as the electrically conductive polymer, a polymer obtained by polymerizing at least one monomer selected from a group consisted of pyrrole, thiophene, aniline and derivatives thereof.

17 . The electrically conductive polymer suspension according to claim 3 , wherein the electrically conductive polymer material comprises, as the electrically conductive polymer, a polymer obtained by polymerizing at least one monomer selected from a group consisted of pyrrole, thiophene, aniline and derivatives thereof.

18 . An electrically conductive polymer composition obtained by removing the dispersion medium from the electrically conductive polymer suspension according to claim 2 .

19 . An electrically conductive polymer composition obtained by removing the dispersion medium from the electrically conductive polymer suspension according to claim 3 .

20 . An electrically conductive polymer composition obtained by removing the dispersion medium from the electrically conductive polymer suspension according to claim 4 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2010
From: NOBUTA, TOMOKI; KOBAYAKAWA, RYUTA; TAKAHASHI, NAOKI; SUGAWARA, YASUHISA; SUZUKI, SATOSHI
To: NEC TOKIN CORPORATION
Reel/Frame 025069/0391 →