Claims
- 1. A process for telomerizing dienes which comprises the step of reacting a diene with a telomerizing compound, said telomerizing agent being selected from the group consisting of a carboxylic acid, an amine, a silanol, a compound containing a reactive methylene function and nitromethane, containing at least one mobile hydrogen atom in the presence of a water-soluble catalytic system comprising at least one water-soluble phosphine having the following formula (I): ##STR10## wherein Ar.sub.1, Ar.sub.2 and Ar.sub.3 each represent an aryl group having from 6 to 10 carbon atoms, which may be alike or different from each other; Y.sub.1, Y.sub.2 and Y.sub.3, which may be alike or different from each other each represent an alkyl group containing 1 to 4 carbon atoms, an alkoxy group containing 1 to 4 carbon atoms, a halogen, cyano-, nitro-, or hydroxy radical or an amino group ##STR11## wherein R.sub.1 and R.sub.2, which may be alike or different from each other each represent an alkyl group containing 1 to 4 carbon atoms; M represents a cation which is able to form water-soluble compounds of formula (I) selected from the group consisting of a proton, a cation derived from an alkali metal or an alkaline earth metal, ammonium, a group N(R.sub.3 R.sub.4 R.sub.5 R.sub.6)+, wherein R.sub.3, R.sub.4, R.sub.5 and R.sub.6 each represent hydrogen or an alkyl group containing 1 to 4 carbon atoms and may be alike or different from each other, and a cation of any other metal, which is able to form water-soluble salts with benzosulfonic acids; m.sub.1, m.sub.2 and m.sub.3 each represent a whole number from 0 to 5 which may be the same or different from each other and n.sub.1, n.sub.2 and n.sub.3 each represent a whole number from 0 to 3, which may be the same or different from each other, whereby at least one of these numbers n.sub.1, n.sub.2 and n.sub.3 equals at least one and further comprising a compound selected from the group consisting of a transition metal or a transition metal-containing compound.
- 2. The process as defined in claim 1, wherein the diene is a diene having 4 to about 20 carbon atoms.
- 3. The process as defined in claim 1, wherein the ratio between the amount of diene and of telomerizing compound is equivalent to at least one molecule of diene per ten atom of mobile hydrogen.
- 4. The process as defined in claim 1, further comprising the step of introducing water into the reaction mixture thereby forming an aqueous solution of said catalytic system.
- 5. The process as defined in claim 4, wherein the water is introduced after the reaction is terminated.
- 6. The process as defined in claim 1, wherein Ar.sub.1, Ar.sub.2 and Ar.sub.3 L each represent phenyl.
- 7. The process as defined in claim 1, wherein Y.sub.1, Y.sub.2 and Y.sub.3, which may be alike or different from each other, each represent an alkyl group containing 1 to 2 carbon atoms, an alkoxy group containing 1 to 2 carbon atoms or chlorine.
- 8. The process as defined in claim 1, wherein M represents a proton, a cation derived from sodium, potassium, calcium or barium, ammonium, tetramethyl ammonium, tetraethyl ammonium, tetrapropyl ammonium or tetrabutyl ammonium.
- 9. The process as defined in claim 1, wherein m.sub.1, m.sub.2 and m.sub.3, which may be alike or different from each other each represent a whole number between 0 and 3.
- 10. The process as defined in claim 1, wherein Ar.sub.1, Ar.sub.2 and Ar.sub.3 each represent phenyl, Y.sub.1, Y.sub.2 and Y.sub.3, which may be alike or different from each other, each represent an alkyl group containing 1 to 2 carbon atoms, an alkoxy group containing 1 to 2 carbon atoms or chlorine, M represents a cation of the group consisting of a proton, a cation derived from sodium, potassium, calcium or barium, ammonium, tetramethyl ammonium, tetraethyl ammonium, tetrapropyl ammonium or tetrabutyl ammonium and m.sub.1, m.sub.2 and m.sub.3, which may be alike or different from each other each represent a whole number between 0 and 3.
- 11. The process as defined in claim 1, wherein Ar.sub.1, Ar.sub.2 and Ar.sub.3 each represent phenyl, n.sub.1 represents 1, n.sub.2, n.sub.3, m.sub.1, m.sub.2 and m.sub.3 each represent zero, and M represents a proton, a cation derived from sodium, potassium, calcium or barium, ammonium, tetramethyl ammonium or tetraethyl ammonium.
- 12. The process as defined in claim 1, wherein Ar.sub.1, Ar.sub.2 and Ar.sub.3 each represent phenyl, n.sub.1 and n.sub.2 each represent 1, m.sub.1, m.sub.2, m.sub.3 and n.sub.3 each represent zero, and M represents a proton, a cation derived from sodium, potassium, calcium or barium, ammonium, tetramethyl ammonium or tetraethyl ammonium.
- 13. The process as defined in claim 1, wherein Ar.sub.1, Ar.sub.2 and Ar.sub.3 each represent phenyl, n.sub.1, n.sub.2 and n.sub.3 each represent 1, m.sub.1, m.sub.2 and m.sub.3 each represent zero, and M represents a proton, a cation derived from sodium, potassium, calcium or barium, ammonium, tetramethyl ammonium or tetraethyl ammonium.
- 14. The process as defined in claim 9, wherein at least one of the sulfo groups which are present therein in each of the phenyl groups Ar.sub.1, Ar.sub.2 or Ar.sub.3 is situated in m-position.
- 15. The process as defined in claim 1, wherein the transition metal is a metal from the group of palladium, nickel, platinum, cobalt, and rhodium.
- 16. The process as defined in claim 15, wherein the transition compound is palladium.
- 17. The process as defined in claim 16, wherein the palladium is deposited onto an inert carrier material.
- 18. The process as defined in claim 15, wherein at least part of the transition metal is zero valent.
- 19. The process as defined in claim 1, wherein the transition metal-containing compound is a compound containing palladium, nickel, platinum, cobalt or rhodium.
- 20. The process as defined in claim 19, wherein the transition metal-containing compound is a palladium compound.
- 21. The process as defined in claim 20, wherein the palladium compound is a compound from the group of palladium-acetate, -carboxylate, -carbonate, -borate, -bromide, -chloride, -iodide, -citrate, -hydroxide, -nitrate, -sulfate, -arylsulfonates, -alkylsulfonates, -acetylacetonate, bis(benzonitrile)palladium chloride, and potassium tetrachloro palladate.
- 22. The process as defined in claim 20, wherein the palladium compound is a compound from the group of bis(cyclooctadiene-1,5) (palladium (zero), tetra (triphenylphosphine) palladium (zero), and potassium tetracyano palladate.
- 23. The process as defined in claim 1, wherein the reaction is effected in the presence of a reducing agent capable of reducing the transition metal.
- 24. The process as defined in claim 23, wherein the reducing agent is an agent from the group of sodium borohydride [BH.sub.4 Na], potassium borohydride, zinc powder, and magnesium.
- 25. The process as defined in claim 1, wherein the amount of transition metal is from about 10.sup.-4 to about 1 gram atom per liter.
- 26. The process as defined in claim 25, wherein the amount of transition metal is from about 0.005 to about 0.5 gram atom per liter.
- 27. The process as defined in claim 1, wherein the amount of a phosphine of the formula (I) is from about 0.5 to 2,000 moles per gram atom of transition metal.
- 28. The process as defined in claim 27, wherein the amount of a phosphine of formula (I) is from about 1 to about 30 moles per gram atom of transition metal.
- 29. The process as defined in claim 1, wherein the reaction is effected in the presence of an additive selected from the group consisting of a basic compound and a mixture of a basic compound and an acid.
- 30. The process as defined in claim 29, wherein the additive is selected from the group consisting of alkaline metal hydroxide, alkaline earth metal hydroxides, tertiary aliphatic amines, tertiary aromatic amines and phenolates.
- 31. The process as defined in claim 29, wherein the acid is a mineral acid of an element of the Groups IIIA, IVA, VA, VIA and VIIA of the periodic system.
- 32. The process as defined in claim 29, wherein the acid is a carbocyclic arylsulfonic or alkylsulfonic acid.
- 33. The processs as defined in claim 29, wherein the additive is selected from the group consisting of alkaline carbonates, alkaline bicarbonates, sodium silicates and alkaline salts of phosphorus acid, phosphoric acid and arsenic acid.
- 34. The process as defined in claim 33, wherein the additive is sodium carbonate.
- 35. The process as defined in claim 1, wherein the reaction mixture comprises an organic water immiscible solvent.
- 36. The process as defined in claim 35, wherein the solvent is a solvent of the group of benzene, benzonitrile, acetophenone, ethyl ether, propyl ether, isopropyl ether, methylethylketone and propionitrile.
- 37. The process as defined in claim 1, wherein the reaction mixture further comprises an organic water miscible solvent.
- 38. The process as defined in claim 37, wherein the solvent is a solvent of the group of acetone, acetonitrile, dimethylether of diethylene glycol and dimethoxyethane, dioxane, tert. butanol, dimethyl acetamide, n-methyl pyrolidone and ethylene carbonate.
- 39. The process as defined in claim 1, wherein the reaction is performed at a temperature between about -20.degree. C. and about 200.degree. C.
- 40. The process as defined in claim 1, which comprises reacting butadiene with acetic acid whereby 1-acetoxyoctadiene-2,7 is formed.
- 41. The process as defined in claim 1, which comprises reacting butadiene with diethylamine whereby 1-(N,N-diethylamino)-butene-2 and 1-(N,N-diethylamino)octadiene-2,7 are formed.
- 42. The process as defined in claim 1, which comprises reacting butadiene with morpholine whereby N-octadiene-2,7-yl morpholine is formed.
- 43. The process as defined in claim 2, wherein the diene is a diene having 4 to about 8 carbon atoms.
- 44. The process as defined in claim 3, wherein the diene is selected from the group consisting of butadiene, isoprene, piperylene and dimethylbutadiene.
Parent Case Info
This is a division of application Ser. No. 926,127, filed July 19, 1978, now U.S. Pat. No. 4,219,677; which in turn is a division of Ser. No. 817,800, filed July 21, 1977, now U.S. Pat. No. 4,142,060.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
3754041 |
Mitsuyasu et al. |
Aug 1973 |
|
Divisions (2)
|
Number |
Date |
Country |
Parent |
926127 |
Jul 1978 |
|
Parent |
817800 |
Jul 1977 |
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