IP Library › Granted Patent US 11,767,379
Granted Patent B2
US 11,767,379 · App. 16/976,945 · Granted Sep 26, 2023

Method for manufacturing fluoropolymer

Inventors: Yoshinori Nanba (Osaka, JP); Kenji Ichikawa (Osaka, JP); Yohei Fujimoto (Osaka, JP); Hirotoshi Yoshida (Osaka, JP); Hiroyuki Sato (Osaka, JP); Taketo Kato (Osaka, JP); Kengo Ito (Osaka, JP); Sumi Ishihara (Osaka, JP); Masahiro Higashi (Osaka, JP); Satoru Yoneda (Osaka, JP); Hirokazu Aoyama (Osaka, JP); Masamichi Sukegawa (Osaka, JP); Yosuke Kishikawa (Osaka, JP); Takahiro Taira (Osaka, JP); Chiaki Okui (Osaka, JP); Taku Yamanaka (Osaka, JP)
Assignee: DAIKIN INDUSTRIES, LTD.
C08F14/26B29C55/005C08F2/22C08F2/44C08F114/26C08F214/26C08F261/06B29K2027/18
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Quick Facts
Patent No.
US 11,767,379
App. No.
16/976,945
Granted
Sep 26, 2023
Kind
B2
Abstract

A method for producing a fluoropolymer, which includes polymerizing a fluoromonomer in an aqueous medium in the presence of a polymer (1), the polymer (1) including a polymerized unit derived from a monomer CX 2 ═CY(—CZ 2 —O—Rf-A), wherein X is the same or different and is —H or —F; Y is —H, —F, an alkyl group, or a fluorine-containing alkyl group; Z is the same or different and is —H, —F, an alkyl group, or a fluoroalkyl group; Rf is a C1-C40 fluorine-containing alkylene group or a C—C100 fluorine-containing alkylene group and having an ether bond; and A is —COOM, —SO 3 M, or —OSO 3 M, wherein M is —H, a metal atom, —NR 7 4 , imidazolium optionally having a substituent, pyridinium optionally having a substituent, or phosphonium optionally having a substituent, wherein R 7 is H or an organic group, providing that at least one of X, Y, and Z contains a fluorine atom.

Claims (19)

1. A method for producing a fluoropolymer, comprising polymerizing a fluoromonomer in an aqueous medium in the presence of a polymer (1) to provide a fluoropolymer, the polymer (1) having a number average molecular weight of 0.3×10 4 or more and comprising 90 mol % or more, based on all polymerized units, of a polymerized unit (1) derived from a monomer represented by the following general formula (1):

CX 2 ═CY(—CZ 2 —O—Rf-A)  (1)

wherein X is the same or different and is —H or —F; Y is —H, —F, an alkyl group, or a fluorine-containing alkyl group; Z is the same or different and is —H, —F, an alkyl group, or a fluoroalkyl group; Rf is a fluorine-containing alkylene group having 1 to 40 carbon atoms or a fluorine-containing alkylene group having 2 to 100 carbon atoms and having an ether bond; and A is —COOM, —SO 3 M, or —OSO 3 M, wherein M is —H, a metal atom, —NR 7 4 , imidazolium optionally having a substituent, pyridinium optionally having a substituent, or phosphonium optionally having a substituent, wherein R 7 is H or an organic group, with the proviso that at least one of X, Y, and Z contains a fluorine atom.

2. The method according to claim 1 , wherein in the general formula (1), at least one X is —H.

3. The method according to claim 1 , wherein in the general formula (1), both X are —H.

4. The method according to claim 1 , wherein in the general formula (1), Rf is a fluorine-containing alkylene group having 1 to 10 carbon atoms or a fluorine-containing alkylene group having 2 to 12 carbon atoms and having an ether bond.

5. The method according to claim 1 , wherein the polymerized unit (1) is a polymerized unit (1A) derived from a monomer represented by the following general formula (1A):

CH 2 ═CF(—CF 2 —O—Rf-A)  (1A)

wherein Rf and A are as described above.

6. The method according to claim 1 , wherein the polymerized unit (1) is a polymerized unit (1a) derived from a fluoroallyl ether compound represented by the following general formula (1a):

CX 2 ═CFCF 2 —O—(CF(CF 3 )CF 2 O) n5 —CF(CF 3 )-A  (1a)

wherein each X is the same and represents F or H; n5 represents 0 or an integer of 1 to 10; and A is as defined above.

7. The method according to claim 1 , wherein A is —COOM.

8. The method according to claim 1 , wherein M is —H, —Na, —K, —Li, or —NH 4 .

9. The method according to claim 1 , wherein the polymer (1) has a number average molecular weight of 1.0×10 4 or more.

10. The method according to claim 1 , wherein the polymer (1) has a number average molecular weight of 3.0×10 4 or more.

11. The method according to claim 1 , wherein the fluoropolymer is polytetrafluoroethylene.

12. The method according to claim 11 , wherein the polytetrafluoroethylene is a modified polytetrafluoroethylene.

13. A method for producing a stretched body, comprising stretching the polytetrafluoroethylene obtained by the method according to claim 12 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2020
From: NANBA, YOSHINORI; ICHIKAWA, KENJI; FUJIMOTO, YOHEI; YOSHIDA, HIROTOSHI; SATO, HIROYUKI; KATO, TAKETO; ITO, KENGO; ISHIHARA, SUMI; HIGASHI, MASAHIRO; YONEDA, SATORU; AOYAMA, HIROKAZU; SUKEGAWA, MASAMICHI; KISHIKAWA, YOSUKE; TAIRA, TAKAHIRO; OKUI, CHIAKI; YAMANAKA, TAKU
To: DAIKIN INDUSTRIES, LTD.
Reel/Frame 053656/0302 →
Priority Claims (2)
JP 2018-036879 · Mar 1, 2018 · national
JP 2018-216864 · Nov 19, 2018 · national
Continuity (1)
Related Publication 20200392266A1 · Dec 17, 2020
Cited By (4)
US 12,410,266 US 12,448,466 US 12,460,025 US 12,503,527