IP Library Granted Patent US 10,727,515
Granted Patent B2
US 10,727,515 · App. 16/044,004 · Granted Jul 28, 2020

Anion exchange resin, electrolyte membrane, binder for forming electrode catalyst layer, fuel cell electrode catalyst layer and fuel cell

Inventors: Kenji Miyatake (Yamanashi, JP); Junpei Miyake (Yamanshi, JP); Hideaki Ono (Yamanashi, JP); Manai Shimada (Yamanashi, JP); Naoki Yokota (Yamanashi, JP); Natsumi Yoshimura (Yamanashi, JP); Aoi Takano (Shiga, JP); Koichiro Asazawa (Shiga, JP); Eriko Nishino (Shiga, JP); Yui Kuwabara (Shiga, JP)
Assignees: UNIVERSITY OF YAMANASHI; TAKAHATA PRECISION CO., LTD.
H01M8/1023C08J5/225C08J5/2231C08J5/2262H01M4/8668C08J2365/00H01M2008/1095
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,727,515
App. No.
16/044,004
Granted
Jul 28, 2020
Kind
B2
Abstract

An anion exchange resin capable of producing an electrolyte membrane, a binder for forming an electrode catalyst layer and a fuel cell electrode catalyst layer, which have improved electrical properties; an electrolyte membrane and a binder for forming an electrode catalyst layer produced from the anion exchange resin; and a fuel cell having the electrolyte membrane or the electrode catalyst layer.

Claims (26)

1. An anion exchange resin, comprising:

a divalent hydrophobic group being composed of three or more aromatic rings which are connected to each other via carbon-carbon bond; and

a divalent hydrophilic group being composed of one aromatic ring, or being composed of a plurality of aromatic rings which are connected to each other via a linking group and/or carbon-carbon bond, wherein the linking group is a divalent hydrocarbon group, a divalent silicon-containing group, a divalent nitrogen-containing group, a divalent phosphorus-containing group, a divalent oxygen-containing group, or a divalent sulfur-containing group, and at least one of the linking group or the aromatic ring comprises an anion exchange group;

wherein the anion exchange resin comprises a hydrophobic unit being composed of the hydrophobic group alone, or being composed of a plurality of hydrophobic groups repeated via ether bond, thioether bond, or carbon-carbon bond;

wherein the anion exchange resin comprises a hydrophilic unit being composed of the hydrophilic group alone, or being composed of a plurality of hydrophilic groups repeated via ether bond, thioether bond, or carbon-carbon bond; and

wherein the hydrophobic unit and the hydrophilic unit are connected via ether bond, thioether bond, or carbon-carbon bond;

wherein the hydrophilic group comprises a linear oligophenylene group as shown in the following formula (2):

(In the formula, x represents an integer of 3 to 8).

2. The anion exchange resin according to claim 1 , wherein the hydrophilic group is composed of a plurality of aromatic rings which are connected to each other via a linking group and/or carbon-carbon bond, wherein the linking group is a divalent hydrocarbon group, a divalent silicon-containing group, a divalent nitrogen-containing group, a divalent phosphorus-containing group, a divalent oxygen-containing group, or a divalent sulfur-containing group, and at least one of the linking group or the aromatic ring is connected to an anion exchange group via a divalent saturated hydrocarbon group having a carbon number of 2 or more.

3. The anion exchange resin according to claim 2 , wherein the hydrophilic group comprises a fluorene residue as shown in the following formula (3a):

(In the formula, Ion and Ion′ are the same or different and represent an anion exchange group; and y and z are the same or different and represent an integer of 2 to 20).

4. An electrolyte membrane, comprising the anion exchange resin according to claim 1 .

5. A binder for forming an electrode catalyst layer, comprising the anion exchange resin according to claim 1 .

6. The anion exchange resin according to claim 1 , wherein the hydrophilic group is composed of a plurality of aromatic rings which are connected to each other via a linking group and/or carbon-carbon bond, wherein the linking group is a divalent hydrocarbon group, a divalent silicon-containing group, a divalent nitrogen-containing group, a divalent phosphorus-containing group, a divalent oxygen-containing group, or a divalent sulfur-containing group, and at least one of the linking group or the aromatic ring is connected to an anion exchange group via a divalent saturated hydrocarbon group having a carbon number of 2 or more.

7. The anion exchange resin according to claim 6 , wherein the hydrophilic group comprises a fluorene residue as shown in the following formula (3a).

(In the formula, Ion and Ion′ are the same or different and represent an anion exchange group; and y and z are the same or different and represent an integer of 2 to 20).

8. The electrolyte membrane according to claim 4 , wherein the hydrophilic group comprises a linear oligophenylene group as shown in the following formula (2).

(In the formula, x represents an integer of 3 to 8).

9. The electrolyte membrane according to claim 4 , wherein the hydrophilic group is composed of a plurality of aromatic rings which are connected to each other via a linking group and/or carbon-carbon bond, wherein the linking group is a divalent hydrocarbon group, a divalent silicon-containing group, a divalent nitrogen-containing group, a divalent phosphorus-containing group, a divalent oxygen-containing group, or a divalent sulfur-containing group, and at least one of the linking group or the aromatic ring is connected to an anion exchange group via a divalent saturated hydrocarbon group having a carbon number of 2 or more.

10. The electrolyte membrane according to claim 8 , wherein the hydrophilic group comprises a fluorene residue as shown in the following formula (3a):

(In the formula, Ion and Ion′ are the same or different and represent an anion exchange group; and y and z are the same or different and represent an integer of 2 to 20).

11. The binder for forming an electrode catalyst layer according to claim 5 , wherein the hydrophilic group comprises a linear oligophenylene group as shown in the following formula (2):

(In the formula, x represents an integer of 3 to 8).

12. The binder for forming an electrode catalyst layer according to claim 5 , wherein the hydrophilic group is composed of a plurality of aromatic rings which are connected to each other via a linking group and/or carbon-carbon bond, wherein the linking group is a divalent hydrocarbon group, a divalent silicon-containing group, a divalent nitrogen-containing group, a divalent phosphorus-containing group, a divalent oxygen-containing group, or a divalent sulfur-containing group, and at least one of the linking group or the aromatic ring is connected to an anion exchange group via a divalent saturated hydrocarbon group having a carbon number of 2 or more.

13. The binder for forming an electrode catalyst layer according to claim 12 , wherein the hydrophilic group comprises a fluorene residue as shown in the following formula (3a).

(In the formula, Ion and Ion′ are the same or different and represent an anion exchange group; and y and z are the same or different and represent an integer of 2 to 20).

Assignments (3)
CHANGE OF ASSIGNEE'S ADDRESS Recorded Sep 14, 2021
From: TAKAHATA PRECISION CO., LTD.
To: TAKAHATA PRECISION CO., LTD.
Reel/Frame 057501/0278 →
CHANGE OF NAME Recorded Aug 19, 2019
From: TAKAHATA PRECISION JAPAN CO., LTD.
To: TAKAHATA PRECISION CO., LTD.
Reel/Frame 050092/0955 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2018
From: MIYATAKE, KENJI; MIYAKE, JUNPEI; ONO, HIDEAKI; SHIMADA, MANAI; YOKOTA, NAOKI; YOSHIMURA, NATSUMI; TAKANO, AOI; ASAZAWA, KOICHIRO; NISHINO, ERIKO; KUWABARA, YUI
To: UNIVERSITY OF YAMANASHI; TAKAHATA PRECISION JAPAN CO., LTD.
Reel/Frame 046445/0637 →
Priority Claims (1)
JP 2017-143136 · Jul 24, 2017 · national
Continuity (1)
Related Publication 20190027768A1 · Jan 24, 2019
Cited By (2)
US 12,603,388 US 12,624,157