Claims
- 1. A hydrocyanation process, comprising reacting an acyclic, aliphatic, monoethylenically unsaturated compound in which the ethylenic double bond is not conjugated to any other olefinic group in the molecule with a source of HCN in the presence of a catalyst precursor composition comprising a Lewis acid, a zero-valent nickel, and a multidentate phosphite ligand selected from the group represented by the formulae I, I-A or I-B:
- 2. The process of claim 1 wherein the ligand has the structure of formula I.
- 3. The process of claim 1 wherein at least one of the groups X2-X5 has the structure of formulae A or B; Y3=O or CH2; and R14 is defined as above:
- 4. The process of claim 1 wherein the Lewis acid is selected from the group consisting of inorganic or organometallic compounds in which one element of said compound is selected from scandium, titanium, vanadium, chromium, manganese, iron, cobalt, copper, zinc, boron, aluminum, yttrium, zirconium, niobium, molybdenum, cadmium, rhenium and tin.
- 5. The process of claim 4 wherein the Lewis acid is selected from the group consisting of ZnBr2, ZnI2, ZnCl2, ZnSO4, CuCl2, CuCl, Cu(O3SCF3)2, CoCl2, CoI2, FeI2, FeCl3, FeCl2(tetrahydrofuran)2, TiCl4(tetrahydrofuran)2, TiCl4, TiCl3, ClTi(OiPr)3, MnCl2, ScCl3, AlCl3, (C8H17)AlCl2, (C8H17)2AlCl, (iso-C4H9)2AlCl, (phenyl)2AlCl, phenylAlCl2, ReCl5, ZrCl4, NbCl5, VCl3, CrCl2, MoCl5, YCl3, CdCl2, LaCl3, Er(O3SCF3)3, Yb(O2CCF3)3, SmCl3, TaCl5, CdCl2, B(C6H5)3, and (C6H5)3SnX, wherein X=CF3SO3, CH3C6H5SO3, or (C6H5)3BCN.
- 6. The process of claim 1 wherein the ethylenically unsaturated compound is selected from the group consisting of 3-pentenenitrile, 4-pentenenitrile; alkyl 2-, 3-, and 4-pentenoates, and CzF2z+1CH═CH2, wherein z is an integer of 1 to 12.
- 7. The process of claim 6 wherein the ethylenically unsaturated compound is 3-pentenenitrile or 4-pentenenitrile.
- 8. The process of claim 1 which is carried out at a temperature of −25° C. to 200° C. and at a pressure of 50.6 to 1013 kPa.
- 9. The process of claim 8 which is carried out at atmospheric pressure and at a temperature of 0° C. to 150° C.
- 10. A process for the liquid phase hydrocyanation of diolefins and isomerization of the resulting nonconjugated acyclic nitriles comprising, reacting an acyclic aliphatic diolefin with a source of HCN in the presence of a catalyst composition comprising nickel and at least one multidentate phosphite ligand of the formulae II, II-A or II-B:
- 11. The process of claim 10 wherein the ligand has the structure of formula II.
- 12. The process of claim 10 wherein at least one of the groups X2-X5 has the structure of formulae A or B; Y3=O or CH2; and R14 is defined as above:
- 13. The process of claim 10 wherein the diolefinic compound is 1,3-butadiene.
- 14. The process of claim 10 wherein either hydrocyanation or isomerization is performed as a batch operation or both hydrocyanation and isomerization are performed as a batch operation.
- 15. The process of claim 10 wherein either hydrocyanation or isomerization is performed continously or both hydrocyanation and isomerization are performed continuously.
- 16. The process of claim 10 wherein the diolefin compound comprises conjugated diolefins containing from 4 to 10 carbon atoms.
- 17. The process of claim 16 wherein the diolefin compound is selected from the group consisting of 1,3-butadiene, cis-2,4-hexadiene, trans-2,4-hexadiene, cis-1,3-pentadiene and trans-1,3-pentadiene.
- 18. The process of claim 10 wherein hydrocyanation is carried out at a temperature of from about 0° C. to 150° C.
- 19. The process of claim 10 wherein during hydrocyanation the molar ratio of HCN to catalyst precursor compound is between about 100:1 to 5,000:1.
- 20. The process of claim 19 wherein during hydrocyanation the molar ratio of HCN to catalyst precursor compound is between about 100:1 to 5,000:1.
- 21. A multidentate phosphite ligand of the formulae II, II-A or II-B:
- 22. The ligand of claim 21 wherein either Y1 or Y2 is linked to Z to form a cyclic ether.
- 23. The ligand of claim 21 having the structure of Formula II wherein at least one of the groups X2-X5 has the structure of formulae A or B; Y3=O or CH2; and R14 is defined as above:
- 24. A catalyst composition comprising the ligand of claim 21 and Group VIII metal.
- 25. The composition of claim 24 wherein the Group VIII metal is selected from the group consisting of ruthenium, rhodium, and iridium.
- 26. The composition of claim 24 wherein the Group VIII metal is rhodium.
- 27. The composition of claim 24 wherein the Group VIII metal is selected from the group consisting of nickel, cobalt, and palladium.
- 28. The composition of claim 27 wherein the Group VIII metal is nickel.
- 29. The composition of claim 24 wherein a Lewis acid is selected from the group consisting of inorganic or organometallic compounds in which one element of said compound is selected from scandium, titanium, vanadium, chromium, manganese, iron, cobalt, copper, zinc, boron, aluminum, yttrium, zirconium, niobium, molybdenum, cadmium, rhenium and tin.
- 30. The composition of claim 24 wherein the Lewis acid is selected from the group consisting of ZnBr2, ZnI2, ZnCl2, ZcSO4, CuCn2, CuCl, Cu(O3SCF3)2, CoCl2, CoI2, FeI2, FeCl3, FeCl2(tetrahydrofuran)2, TiCl4(tetrahydrofuran)2, TiCl4, TiCl3, ClTi(OiPr)3, MnCl2, ScCl3, AlCl3, (C8H17)AlCl2, (C8H17)2AlCl, (iso-C4H9)2AlCl, (phenyl)2AlCl, phenylAlCl2, ReCl5, ZrCl4, NbCl5, VCl3, CrCl2, MoCl5, YCl3, CdCl2, LaCl3, Er(O3SCF3)3, Yb(O2CCF3)3, SmCl3, TaCl5, CdCl2, B(C6H5)3, and (C6H5)3SnX, wherein X=CF3SO3, CH3C6H5SO3, or (C6H5)3BCN.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application No. 60/154,727 filed Sep. 20, 1999.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60154727 |
Sep 1999 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09650583 |
Aug 2000 |
US |
Child |
10118551 |
Apr 2002 |
US |