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3- -5-hexenoates

The intramolecular reaction oF allcenes with various O and N functional groups offers useful synthetic methods for heterocycles[13,14,166]. The reaction of unsaturated carboxylic acids affords lactones by either exo- or endo-cyclization depending on the positions of the double bond. The reaction of sodium salts of the 3-alkenoic acid 143 and 4-alkenoic acid 144 with Li2PdCl4 affords mostly five-membcrcd lactones in 30-40% yields[167]. Both 5-hexe-noic acid (145) and 4-hexenoic acid (146) are converted to five- or six-mem-bered lactones depending on the solvents and bases[168]. Conjugated 2,4-pentadienoic acid (147) is cyclized with Li2PdCl4 to give 2-pyrone (148) in water[i69]. [Pg.41]

Conjugated Double Bonds. Sorbic acid is brominated faster than other olefinic acids (7). Reaction with hydrogen chloride gives predominately 5-chloro-3-hexenoic acid (8). [Pg.282]

Similar coordination occurs also in the presence of other di- and trivalent metals. Reduction of the double bonds can produce various hexenoic acid mixtures. [Pg.282]

Sorbic acid anhydride [13390-06-2] can be prepared by heating the polyester of 3-hydroxy-4-hexenoic acid with sorboyl chloride [2614-88-2] or by reaction of sorbic acid with oxalyl chloride (15,16). Preparation of the esters of sorbic acid must be controlled to prevent oxidation and polymerization. The lower sorbic acid esters have a pleasant odor. [Pg.282]

Other methods include ring opening of parasorbic acid [108-54-3] (5-lactone of 5-hydroxy-2-hexenoic acid) in hydrochloric acid or in alkaline solutions (43,44), the ring opening of y-vinyl- y-butyrolactone in various catalysts (45,46), or isomerization of 2,5-hexadienoic acid esters (47,48). Other methods are described in thehterature (6,49,50). [Pg.284]

An example of a stereoselective hydrogenation in ionic liquids was recently successfully demonstrated by Drie en-H6lscher et al. On the basis of investigations into the biphasic water/n-heptane system [51], the ruthenium-catalyzed hydrogenation of sorbic acid to cis-3-hexenoic acid in the [BMIM][PFg]/MTBE system was studied [52], as shown in Scheme 5.2-8. [Pg.230]

Methyl-2-hexenoic acid (mixture of ll and Z isomers) has been identified as the substance responsible for the odor of human sweat. Synthesize the compound from starting materials having five or fewer carbons. [Pg.781]

Methyl GS SJ-S-Benzyloxy hydroxy-S-hexenoate (6) Typical Procedure50 ... [Pg.48]

Consecutive Michael additions and alkylations can also be used for the diastereoselective synthesis of 5- and 6-membered ring systems. For instance when 6-iodo-2-hexenoates or 7-iodo-2-heptenoates are employed the enolate of the Michael adduct is stereoselectively quenched in situ to provide the cyclic compound with trans stereochemistry (>94 6 diastereomeric ratio). As the enolate geometry of the Michael donor can be controlled, high stereoselectivity can also be reached towards either the syn or anti configuration at the exocyclic... [Pg.995]

CN ( )-6-(l,3-dihydro-4-hydroxy-6-methoxy-7-methyl-3-oxo-5-isobenzofuranyl)-4-methyl-4-hexenoic acid 2-(4-morpholinyl)ethyl ester... [Pg.1378]

Host Cyclo- hexeno Inclusion complex From complex From filtrate ... [Pg.15]

Sorbic acid has been prepared from crotonaldehyde 1 5 or aldol6 and malonic acid in pyridine solution by hydrogen peroxide oxidation of the condensation product of crotonaldehyde and pyruvic acid 7 and by the action of alkali on 3-hydroxy-4-hexenoic acid,8 9 /3,5-disulfo-w-caproic acid,10 and parasorbic acid.1112... [Pg.48]

Figure 11.2 Py/silylation GC/MS chromatograms of aged linseed oil pyrolysed in the pre sence of HMDS, (a) Pyrogram obtained with a microfurnace pyrolyser pyrolysis temperature 600 °C furnace pressure 14 psi purge flow 0.5 ml min (b) Pyrogram obtained with a resistively heated filament pyrolyser pyrolyser interface I80°C transfer line 300°C valve oven 290°C. 1, Hexenoic acid, trimethylsilyl ester 2, hexanoic acid, trimethylsilyl ester 3, heptenoic acid, trimethylsilyl ester 4, heptanoic acid, trimethylsilyl ester 5, octenoic acid, trimethylsilyl ester 6, octanoic acid, trimethylsilyl ester 7, nonenoic acid, trimethylsilyl ester 8, nonanoic acid, trimethylsilyl ester 9, decanoic acid, trimethylsilyl ester 10, lauric acid, trimethylsilyl ester 11, suberic acid, trimethylsilyl diester 12, azelaic acid, trimethylsilyl diester 13, myristic acid, trimethylsilyl ester 14, sebacic acid, trimethylsilyl diester 15, palmitic acid, trimethylsilyl ester 16, stearic acid, trimethylsilyl ester... Figure 11.2 Py/silylation GC/MS chromatograms of aged linseed oil pyrolysed in the pre sence of HMDS, (a) Pyrogram obtained with a microfurnace pyrolyser pyrolysis temperature 600 °C furnace pressure 14 psi purge flow 0.5 ml min (b) Pyrogram obtained with a resistively heated filament pyrolyser pyrolyser interface I80°C transfer line 300°C valve oven 290°C. 1, Hexenoic acid, trimethylsilyl ester 2, hexanoic acid, trimethylsilyl ester 3, heptenoic acid, trimethylsilyl ester 4, heptanoic acid, trimethylsilyl ester 5, octenoic acid, trimethylsilyl ester 6, octanoic acid, trimethylsilyl ester 7, nonenoic acid, trimethylsilyl ester 8, nonanoic acid, trimethylsilyl ester 9, decanoic acid, trimethylsilyl ester 10, lauric acid, trimethylsilyl ester 11, suberic acid, trimethylsilyl diester 12, azelaic acid, trimethylsilyl diester 13, myristic acid, trimethylsilyl ester 14, sebacic acid, trimethylsilyl diester 15, palmitic acid, trimethylsilyl ester 16, stearic acid, trimethylsilyl ester...
Again, addition of trialkylphosphine was found to be effective for reducing the amount of products obtained by attaching a formyl group to a carbon other than that of the original carbon-carbon double bond (73). Results obtained with hexenoic acid esters are outlined in Table XXIV. [Pg.36]

The 14C KIE for the rearrangement of 234b to methyl 2-oxo-5-hexenoate, 235b, in CCI4 at 80 °C, deduced from the scintillation counting data on the semicarbazone 237, are ... [Pg.857]

Table 14.3 Hydrogenation of methyl sorbate to 3-hexenoic acid methyl ester with [Cr(CO)3(arene)] (45) catalysts. Table 14.3 Hydrogenation of methyl sorbate to 3-hexenoic acid methyl ester with [Cr(CO)3(arene)] (45) catalysts.

See other pages where 3- -5-hexenoates is mentioned: [Pg.877]    [Pg.886]    [Pg.477]    [Pg.477]    [Pg.15]    [Pg.79]    [Pg.79]    [Pg.329]    [Pg.230]    [Pg.1270]    [Pg.368]    [Pg.552]    [Pg.878]    [Pg.110]    [Pg.2166]    [Pg.2354]    [Pg.438]    [Pg.322]    [Pg.565]    [Pg.54]    [Pg.1105]    [Pg.104]    [Pg.37]    [Pg.236]    [Pg.236]    [Pg.1146]    [Pg.1146]    [Pg.1155]    [Pg.401]    [Pg.401]    [Pg.814]   


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2-Ethyl-3-hexenoic acid

2-Hydroxy-3-methyl- -4-hexenoic acid

2.4- Dimethyl-2-hexenoic acid

3-methyl-2-hexenoic acid

4-Amino-5-hexenoic acid

4-Hexenoic acid, 2-acetyl-2-methyl-6-bromoethyl ester

4-Hexenoic acid, 2-acetyl-2-methyl-6-bromoethyl ester cyclization

5- Hexenoic acid, 3-methyliodolactonization stereoselectivity

5- Hydroxy-2-hexenoic acid 6-lactone

5-Hexenoic acid, 2-amino-4-methylsynthesis

5-Hexenoic acid, 2-amino-4-methylsynthesis via ene reaction of acrylate esters

5-Hexenoic acid, 3- iodolactonization

5-Hexenoic acid, 3-hydroxyselenolactonization stereoselectivity

Cis-3-hexenoic acid

From 4-Methyl-3-hexenoic acid

Hexenoic 3 -methyl-, preparation

Hexenoic acid

Hexenoic add

Hexenoic esters

Methyl -3-hexenoate, preparation

Methyl 3-hexenoate

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