Claims
- 1. A process for the synthesis of long chain compounds having at least one point of unsaturation from an aliphatic or araliphatic hydrocarbon of shorter length having an alkyl, alkenyl or aralkyl radical R and an unsaturated hydrocarbon having a terminal isopropenyl or isopropylidene group and zero or more additional points of double-bond unsaturation, comprising
- halogenating said unsaturated hydrocarbon to produce an allylic halide having a terminal olefinic site and a halogen atom allylic to said site;
- forming the Grignard RMgX of said aliphatic or araliphatic hydrocarbon, X being halogen;
- preparing a reaction mixture comprising said Grignard and said allylic halide; and
- removing from said reaction mixture a compound in which coupling of the Grignard and allylic halide occurs by displacement by R of the Grignard at the terminal olefinic site of the allylic halide accompanied by double bond migration and loss of halide.
- 2. The process of claim 1 wherein said coupling is carried out in the presence of a Kharasch Reaction catalyst and a dipolar aprotic solvent.
- 3. A process for the synthesis of 3,7,11,15-tetramethylhexadec-6-ene, 7-methylene-3,11,15-trimethylhexadecane, or a compound having the same arrangement of carbon atoms and additional points of unsaturation, from a C.sub.10 acyclic terpene hydrocarbon compound of the 2,6-dimethyloctane series, having a terminal isopropenyl or isopropylidene group, and a linear C.sub.10 aliphatic hydrocarbon having an alkyl or alkenyl radical R comprising the steps of;
- (a) halogenating said C.sub.10 acyclic hydrocarbon to produce an allylic halide having a halogen allylic to a terminal olefinic site;
- (b) forming the Grignard reagent RMgX of said C.sub.10 aliphatic hydrocarbon, X being halogen;
- (c) preparing a reaction mixture comprising said Grignard reagent and said allylic halide; and
- (d) removing from said reaction mixture a C.sub.20 compound in which coupling of the Grignard reagent and allylic halide occurs by displacement by R of the Grignard reagent at the terminal olefinic site of the allylic halide accompanied by double bond migration and loss of halide.
- 4. The process of claim 3 wherein said acyclic hydrocarbon is a compound selected from the group consisting of beta-myrcene, alpha-myrcene, beta-ocimene and alpha-ocimene.
- 5. The process of claim 4 wherein said coupling is carried out in the presence of a Kharasch Reaction catalyst and a dipolar aprotic solvent.
- 6. The process of claim 5 wherein said halides are chloride or bromide, said solvent being tetrahydrofuran, the catalyst being a compound selected from the group consisting of cuprous chloride, cupric chloride, ferric chloride and lithium tetrachlorocuprate.
- 7. The process of claim 6 wherein said coupling is carried out by the sequence of adding the catalyst to either the allylic halide or Grignard reagent, and then adding the Grignard reagent to the allylic halide.
- 8. A process for the synthesis of a C.sub.15 compound selected from the group consisting of 10,11-dihydrofarnesene, farnesene, isomers of 10,11-dihydrofarnesene and farnesene, or a compound having the same arrangement of carbon atoms and fewer sites of unsaturation from a C.sub.10 acyclic terpene hydrocarbon compound of the 2,6-dimethyloctane series, having a terminal isopropenyl or isopropylidene group, and a linear C.sub.5 aliphatic hydrocarbon having an alkyl or alkenyl radical R comprising the steps of;
- (a) halogenating said C.sub.10 acyclic hydrocarbon to produce an allylic halide having a halogen allylic to a terminal olefinic site;
- (b) forming the Grignard reagent RMgX of said C.sub.5 aliphatic hydrocarbon, X being halogen;
- (c) preparing a reaction mixture comprising said Grignard reagent and said allylic halide; and
- (d) removing from said reaction mixture said C.sub.15 compound in which coupling of the Grignard reagent and allylic halide occurs by displacement by R of the Grignard reagent at the terminal olefinic site of the allylic halide accompanied by double bond migration and loss of halide.
- 9. The process of claim 8 wherein said acyclic hydrocarbon is a compound selected from the group consisting of beta-myrcene, alpha-myrcene, beta-ocimene and alpha-ocimene.
- 10. The process of claim 9 wherein said coupling is carried out in the presence of a Kharasch Reaction catalyst and a dipolar aprotic solvent.
- 11. The process of claim 10 wherein said halides are chloride or bromide, said solvent being tetrahydrofuran, the catalyst being a compound selected from the group consisting of cuprous chloride, cupric chloride, ferric chloride and lithium tetrachlorocuprate.
- 12. The process of claim 11 wherein said coupling is carried out by the sequence of adding the catalyst to either the allylic halide or Grignard reagent, and then adding the Grignard reagent to the allylic halide.
Parent Case Info
This is a division, of application Ser. No. 786,973 filed Apr. 13, 1977 now abandoned, which is a continuation-in-part of application Ser. Nos. 596,273; 596,426; 596,274; and 596,361, all filed July 16, 1975 and now abandoned.
US Referenced Citations (5)
Related Publications (3)
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Number |
Date |
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596426 |
Jul 1975 |
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596274 |
Jul 1975 |
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596361 |
Jul 1975 |
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Divisions (1)
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Number |
Date |
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Parent |
786973 |
Apr 1977 |
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Continuation in Parts (1)
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Number |
Date |
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596273 |
Jul 1975 |
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