Claims
- 1. A process for the synthesis of a compound having the general formula: ##STR8## R.sub.4 being methyl and R.sub.5 being alkyl, alkenyl, alkadienyl, alkatrienyl, phenyl, or aralkyl, from a ketone having the configuration: ##STR9## comprising the steps of: a. reacting said ketone with a metal acetylide to produce an acetylenic carbinol having the formula: ##STR10## b. reacting said acetylenic carbinol with a reagent capable of replacing the hydroxyl group with a halogen to produce a propargylic halide having the formula: ##STR11## X being a halogen; c. hydrogenatively dehalogenating the propargylic halide to form the corresponding allene having the formula: ##STR12## d. isomerizing the allene in the presence of a strong base to an acetylene having the formula: ##STR13## e. coupling the acetylene of formula (5) in a coupling reaction with a compound having the general formula: ##STR14## wherein R.sub.1 is COR.sub.2, R.sub.2 being lower alkyl, phenyl or aralkyl, R.sub.3 being a halogen; and
- f. hydrogenating the reaction product of step (e) and then saponifying the same to produce a compound of the formula (1).
- 2. The process of claim 1 wherein said ketone is hexahydropseudo-ionone, the compound of formula (1) being 3,7,11,15-tetramethylhexadeca-2,5-dien-1-ol.
- 3. The process of claim 1 wherein step (c) is carried out by dissolving the halide product of step (b) in a mixture of glacial acetic acid and zinc dust.
- 4. A process for the synthesis of a compound having the general formula: ##STR15## R.sub.4 and R.sub.5 being alkyl, alkenyl, alkadienyl, alkatrienyl, phenyl, or aralkyl, or a compound having the same arrangement of carbon atoms in which indicated sites of unsaturation have been hydrogenated, from a ketone having the configuration: ##STR16## comprising the steps of: a. reacting said ketone with a metal acetylide to produce an acetylenic carbinol having the formula: ##STR17## b. reacting said acetylenic carbinol with a reagent capable of replacing the hydroxyl group with a halogen to produce a propargylic halide having the formula: ##STR18## X being a halogen; c. hydrogenatively dehalogenating the propargylic halide to form the corresponding allene having the formula: ##STR19## d. isomerizing the allene in the presence of a strong base to an acetylene having the formula: ##STR20## e. coupling the acetylene of formula (5) in a coupling reaction with a compound having the general formula: ##STR21## wherein R.sub.1 is COR.sub.2, R.sub.2 being lower alkyl, phenyl or aralkyl, R.sub.3 being a halogen; and
- f. hydrogenating the reaction product of step (e) and then saponifying the same to produce a compound of the formula (1).
- 5. The process of claim 4 wherein said ketone is acetone, the compound of formula (1) being 3,7-dimethyloctanol.
- 6. The process of claim 4 wherein said ketone is 6-methylheptan-2-one, the compound of formula (1) being hexahydrofarnesol.
- 7. A process for the synthesis of 3,7,11,15-tetramethylhexadeca-2,5-dien-1-ol (dehydrophytol) comprising the steps of:
- a. reacting hexahydropseudo-ionone with a metal acetylide to form 3,7,11-trimethyl-3-hydroxy-1-dodecyne;
- b. reacting the product of step (a) with an inorganic halogen acid to produce 3,7,11-trimethyl-3-halo-1-dodecyne;
- c. hydrogenatively dehalogenating the product of step (b) to form 3,7,11-trimethyldodeca-1,2-diene, such hydrogenative dehalogenation being carried out by dissolving the product of step (b) in a mixture of glacial acetic acid and zinc;
- d. isomerizing the allene of step (c) to 3,7,11-trimethyldodeca-1-yne; and
- e. coupling the acetylene of step (d) with 1-acetoxy-4-chloro-3-methylbut-2-ene and then hydrogenating and saponifying the same to 3,7,11,15-tetramethylhexadeca-2,5-dien-1-ol.
- 8. A process for the synthesis of dehydrophytol (3,7,11,15-tetramethylhexadeca-2,5-dien-1-ol), comprising the steps of:
- a. reacting hexahydropseudo-ionone with a metal acetylide to form 3,7,11-trimethyl-3-hydroxy-1-dodecyne;
- b. reacting the product of step (a) with aqueous HCl to produce 3,7,11-trimethyl-3-chloro-1-dodecyne;
- c. hydrogenatively dehalogenating the product of step (b) to form the corresponding allene, said allene being 3,7,11-trimethyldodeca-1,2-diene;
- d. isomerizing the allene of step (c) to 3,7,11-trimethyldodeca-1-yne in the presence of a strong base;
- e. coupling the acetylene of paragraph (d) with 1-acetoxy-4-chloro-3-methylbut-2-ene; and
- f. hydrogenating and saponifying the coupling product to dehydrophytol.
- 9. The process of claim 8 wherein step (c) is carried out by dissolving the halide product of step (b) in a mixture of glacial acetic acid and zinc dust.
Parent Case Info
This application is a division of application Ser. No. 560,550, filed Mar. 20, 1975.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
2369163 |
Miles |
Feb 1945 |
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Non-Patent Literature Citations (3)
Entry |
Taylor, "Chem. Rev.", vol. 67 (1967), pp. 319-333. |
Burden et al., "Chem. Communications", (1967), pp. 1259, 1260. |
Wagner et al., "Synthetic Organic Chemistry", (1953), pp. 80, 82 and 90. |
Divisions (1)
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Number |
Date |
Country |
Parent |
560550 |
Mar 1975 |
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