IP Library › Granted Patent US 11,560,347
Granted Patent B2
US 11,560,347 · App. 17/255,689 · Granted Jan 24, 2023

Method for producing fluorovinyl ether compound

Inventors: Naoyuki Hoshiya (Osaka, JP); Akihiro Gotou (Osaka, JP); Yosuke Kishikawa (Osaka, JP)
Assignee: DAIKIN INDUSTRIES, LTD.
C07C41/16
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Quick Facts
Patent No.
US 11,560,347
App. No.
17/255,689
Granted
Jan 24, 2023
Kind
B2
Abstract

A method for synthesizing a fluorovinyl ether compound from a fluorine-containing vinyl compound. Specifically, a method for producing a compound represented by formula (1), comprising step A of reacting a compound represented by formula (2) with a compound represented by formula (3) in the presence of a transition metal catalyst: wherein the substituents are defined in the disclosure.

Claims (54)

1. A method for producing a compound represented by formula (1):

wherein

R a1 is a hydrogen atom, a halogeno group, an alkyl group, a fluoroalkyl group, or an aromatic group optionally having one or more substituents,

Rf is a fluoro group or a perfluoroalkyl group,

R a2 is a hydrogen atom, a halogeno group, an alkyl group, a fluoroalkyl group, or an aromatic group optionally having one or more substituents, or

R a1 and R a2 may be linked to each other,

R b1 is R S ,

R b2 is a hydrogen atom or R S ,

R b3 is a hydrogen atom or R S , or

two or three of R b1 , R b2 , and R b3 , taken together with the adjacent carbon atom, may form a ring optionally having one or more substituents, and

R S , in each occurrence, is the same or different and represents a hydrocarbon group optionally having one or more substituents,

the method comprising

step A of reacting a compound represented by formula (2):

wherein

R x is a leaving group and is selected from the group consisting of a halogeno group, a sulfonic acid ester group, a fluorosulfonyl group, a nitro group, or a cyano group, and

other symbols are as defined above,

with a compound represented by formula (3):

wherein the symbols in the formula are as defined above,

in the presence of a transition metal catalyst.

2. The production method according to claim 1 , wherein R a1 is a hydrogen atom.

3. The production method according to claim 1 , wherein R a2 is a hydrogen atom or an aryl group.

4. The production method according to claim 1 , wherein R b1 is a C 1-11 fluoroalkyl group, R b2 is a hydrogen atom, and R b3 is a hydrogen atom.

5. The production method according to claim 1 , wherein R b1 is a C 1-11 perfluoroalkyl group, R b2 is a hydrogen atom, and R b3 is a hydrogen atom.

6. The production method according to claim 1 , wherein R x is a halogeno group or a sulfonic acid ester group.

7. The production method according to claim 1 , wherein the transition metal catalyst is at least one member selected from the group consisting of palladium catalysts, copper catalysts, nickel catalysts, platinum catalysts, and iron catalysts.

8. The production method according to claim 1 , wherein the transition metal catalyst is a palladium complex.

9. The production method according to claim 1 , wherein the reaction of step A is performed in the presence of a coordination compound.

10. The production method according to claim 1 , wherein the reaction of step A is performed in the presence of a coordination compound and the coordination compound is a biphenyl compound represented by formula (4-1):

wherein

A 4a is a benzene ring,

A 4b is a benzene ring,

R 4a1 is a phosphino group substituted with two C 1-20 hydrocarbon groups,

R 4a2 is an alkyl group or an alkoxy group,

R 4a3 , in each occurrence, is the same or different and represents a substituent,

R 4b , in each occurrence, is the same or different and represents a substituent,

n4a is a number of 0 to 3, and

n4b is a number of 0 to 5.

11. The production method according to claim 1 , wherein the reaction of step A is performed in the presence of a coordination compound and the coordination compound is a biphenyl compound represented by formula (4-1):

wherein

A 4a is a benzene ring,

A 4b is a benzene ring,

R 4a1 is a phosphino group substituted with two substituents selected from the group consisting of cyclohexyl, tert-butyl, and adamantyl groups,

R 4a2 is a methyl group or a methoxy group,

R 4a3 , in each occurrence, is the same or different and represents a substituent,

R 4b , in each occurrence, is the same or different and represents a substituent,

n4a is a number of 0 to 3, and

n4b is a number of 0 to 5.

12. The production method according to claim 1 , wherein the reaction of step A is performed in the presence of a base.

13. The production method according to claim 1 , wherein the reaction of step A is performed in the presence of a base and the base has a pKa of 36 to 3.6.

14. The production method according to claim 1 , wherein the reaction of step A is performed in the presence of a base and the base is at least one member selected from the group consisting of

(1) acetates, carbonates, hydrogen carbonates, phosphates, hydrogen phosphates, alkoxide salts, hydroxide salts, hydride salts, ammonium salts, or amide salts of alkaline or alkaline earth metals,

(2) polymer-supported bases,

(3) alkali metals, and

(4) amines.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2020
From: HOSHIYA, NAOYUKI; GOTOU, AKIHIRO; KISHIKAWA, YOSUKE
To: DAIKIN INDUSTRIES, LTD.
Reel/Frame 054740/0537 →
Priority Claims (1)
JP JP2018-120779 · Jun 26, 2018 · national
Continuity (1)
Related Publication 20210284593A1 · Sep 16, 2021