IP Library Granted Patent US 10,947,186
Granted Patent B2
US 10,947,186 · App. 16/613,822 · Granted Mar 16, 2021

Process for hydrocyanation of terminal alkynes

Inventors: Tobias Ritter (Mülheim an der Ruhr, DE); Fei Ye (Mülheim an der Ruhr, DE)
Assignee: STUDIENGESELLSCHAFT KOHLE MBH
C07C253/12B01J31/2409B01J2231/322B01J2531/0216B01J2531/822C07C255/31C07C255/34C07D213/64C07D333/24
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Quick Facts
Patent No.
US 10,947,186
App. No.
16/613,822
Granted
Mar 16, 2021
Kind
B2
Abstract

The present invention refers to a process for a Rh-catalyzed Anti-Markovnikov hydrocyanation of terminal alkynes which process discloses, for the first time, the highly stereo- and regio-selective hydrocyanation of terminal alkynes to furnish E-configured alkenyl nitriles and the catalyst used in the present process.

Claims (11)

1. A process for hydrocyanation of terminal alkynes comprising reacting a terminal alkyne (I) with at least one —CN source selected from the group consisting of HCN and cyanohydrine (II) in the presence of a Rh-complex to obtain an E-alkenyl nitrile (III):

wherein R is i) a straight chain, branched chain or cyclic aliphatic C 1 to C 20 hydrocarbon, optionally having one or more unsaturated bonds, C 3 -C 8 -heterocycloalkyl, C 6 to C 20 aryl, (C 1 -C 6 )-alkyl-C 6 to C 20 -aryl, (C 1 -C 6 )-alkyl-C 5 to C 20 -heteroaryl, each hydrocarbon optionally being substituted by one or more groups selected from C 1 to C 20 straight chain, branched chain or cyclic aliphatic hydrocarbons, optionally having one or more unsaturated bonds, C 3 -C 8 -heterocycloalkyl, C 6 to C 20 aryl, (C 1 -C 6 )-alkyl-C 6 to C 20 -aryl, (C 1 -C 6 )-alkyl-C 5 to C 20 -heteroaryl or heterosubstituents; or ii) SiR I R II R III , wherein R I , R II , and R III may be same or different and each stands for a straight chain, branched chain or cyclic aliphatic C 1 to C 20 hydrocarbon, optionally having one or more unsaturated bonds, C 3 -C 8 -heterocycloalkyl, C 6 to C 20 aryl, (C 1 -C 6 )-alkyl-C 6 to C 20 -aryl, C 5 to C 20 -heteroaryl, (C 1 -C 6 )-alkyl-C 5 to C 20 -heteroaryl, each hydrocarbon optionally being substituted by one or more groups selected from C 1 to C 20 straight chain, branched chain or cyclic aliphatic hydrocarbons, optionally having one or more unsaturated bonds, C 3 -C 8 -heterocycloalkyl, C 6 to C 20 aryl, (C 1 -C 6 )-alkyl-C 6 to C 20 -aryl, (C 1 -C 6 )-alkyl-C 5 to C 20 -heteroaryl or heterosubstituents;

wherein R 1 and R 2 may be same or different and each stands for a straight chain, branched chain or cyclic aliphatic C 1 to C 20 hydrocarbon, optionally having one or more unsaturated bonds, C 3 -C 8 -heterocycloalkyl, C 6 to C 20 aryl, (C 1 -C 6 )-alkyl-C 6 to C 20 -aryl, (C 1 -C 6 )-alkyl-C 5 to C 20 -heteroaryl, each hydrocarbon optionally being substituted by one or more groups selected from C 1 to C 20 straight chain, branched chain or cyclic aliphatic hydrocarbons, optionally having one or more unsaturated bonds, C 3 -C 8 -heterocycloalkyl, C 6 to C 20 aryl, (C 1 -C 6 )-alkyl-C 6 to C 20 -aryl, (C 1 -C 6 )-alkyl-C 5 to C 20 -heteroaryl or heterosubstituents;

wherein cat Rh I stands for a Tp-Rhodium complex with a mono- or bidentate phosphine, and

wherein solvent stands for an organic solvent.

2. Process for hydrocyanation of terminal alkynes according to claim 1 , wherein R is a straight chain, branched chain or cyclic aliphatic C 1 to C 20 hydrocarbon, optionally having one or more unsaturated bonds, C 6 to C 20 aryl, (C 1 -C 6 )-alkyl-C 6 to C 20 -aryl, each hydrocarbon optionally being substituted by one or more heterosubstituents.

3. Process for hydrocyanation of terminal alkynes according to claim 1 , wherein R 1 and R 2 may be same or different and each stands for is a straight chain, branched chain or cyclic aliphatic C 1 to C 20 hydrocarbon, optionally having one or more unsaturated bonds, C 6 to C 20 aryl, (C 1 -C 6 )-alkyl-C 6 to C 20 -aryl, each hydrocarbon optionally being substituted by one or more heterosubstituents.

4. Process for hydrocyanation of terminal alkynes according to claim 1 , wherein cat Rh I stands for a Tp-Rhodium complex with a bidentate phosphine whereby the residues of the Tp ((tris(1-pyrazolyl)borate anion) and/or the bidentate phosphine ligand are optionally substituted with electro-donating substituent(s).

5. Tp-Rhodium complex with a bidentate phosphine ligand whereby the residues of the Tp ((tris(1-pyrazolyl)borate anion) and/or the bidentate phosphine ligand are optionally substituted with electro-donating substituent(s).

6. Tp-Rhodium complex with a mono- or bidentate phosphine ligand whereby the mono- or bidentate phosphine ligand is selected from dppf (1,1′-bis(diphenylphosphino)ferrocene), dppm (1-bis(diphenylphosphino)methane), dppe (bis(diphenylphosphino)ethan), xantphos (4,5-bis(diphenylphosphino)-9,9-dimethylxanthene), PCy 3 (tricyclohexylphosphine), PPh 3 (triphenylphosphine), BINAP (2,2′ bis(diphenylphosphino)-1,1′-binaphthyl), and DPE-phos (bis[2-(diphenylphosphino) phenyl]ether.

7. Tp-Rhodium complex with a bidentate phosphine ligand according to claim 6 , which is selected from TpRh(dppf) or TpRh(dpe-phos).

Assignments (2)
CHANGE OF NAME Recorded Feb 27, 2023
From: STUDIENGESELLSCHAFT KOHLE MBH
To: STUDIENGESELLSCHAFT KOHLE GGMBH
Reel/Frame 062876/0181 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2019
From: RITTER, TOBIAS; YE, FEI
To: STUDIENGESELLSCHAFT KOHLE MBH
Reel/Frame 051158/0883 →
Priority Claims (1)
DE 10 2017 110 771.1 · May 17, 2017 · national
Continuity (1)
Related Publication 20200181068A1 · Jun 11, 2020