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1,5 Hexadien

The diacetoxylation of E,E)- and ( ,Z)-2.4-hexadiene (351 and 353) is stereospecific, and 2,5-dimethylfurans (352 and 354) of different stereochemistry have been prepared from the isomers. Two different carboxylates are introduced with high cis selectivity by the reaction of 1,3-cyclohexadiene and... [Pg.68]

Dienes can also be used ia Friedel-Crafts cyclo alkylations. For example, treatment of phenol with 2,5-dimethyl-2,4 hexadiene gives 5,5,8,8-tetramethyl,6,7-dihydro-2-naphthol. [Pg.555]

Union Carbide abandoned the ketene—crotonaldehyde route in 1953 in favor of the oxidation of 2,4-hexadienal made by acetaldehyde condensation. A silver compound used as the catalyst prevented peroxidation of the ethylenic bonds (39,40). Thein plant operated until 1970. [Pg.283]

Sodium amalgam converts perfluoro(3,4-dimethyI-3-hexene) to perfluoro-(3,4-dimetliyl-2,4-hexadiene at room temperature in 70% yield [62] (equation 31). [Pg.899]

Less reactive dienes such as cyclohexadiene can be employed efficiently, giving the adduct in 90% yield in 93% ee. Acyclic dienes such as piperylene, 2,4-hexadiene, and 1-phenylbutadiene also react with the acryloyloxazolidinone derivative to afford Diels-Alder cycloadducts in high optical yields (Scheme 1.38, Table 1.17). [Pg.28]

A Dimethyl butynedioate undergoes a Diels-Alder reaction with (2 ,4 )-hexadiene. Show the structure and stereochemistry of the product. [Pg.515]

Figure 30.4 Electrocyclic interconversions of 2,4-hexadiene isomers and 3,4-dimethylcyclo-butene isomers. Figure 30.4 Electrocyclic interconversions of 2,4-hexadiene isomers and 3,4-dimethylcyclo-butene isomers.
A similar result is obtained for the thermal electrocyclic ring-opening of 3,4-dimethylcyclobutene. The trans isomer yields only (2 ,4 )-2,4-hexadiene when heated, and the cis isomer yields only (2 ,4Z)-2,4-hexadiene. On UV irradiation, however, the results are opposite. Cyclization of the 2E,4 isomer under photochemical conditions yields cis product (Figure 30.4). [Pg.1182]

Problem 30.3 fra/is-3,4-Dimethylcyclobutene can open by two conrotatory paths to give either (2 ,4 )-2,4-hexadiene or (2Z,4Z)-2,4-hexadiene. Explain why both products are symmetry-allowed, and then account for the fact that only the 2 ,4 isomer is. obtained in practice. [Pg.1185]

Thus the reaction of the three geometrical isomers of 2,4-hexadiene with thiirane oxide afforded the three related 3-thiolene 5-oxides 154 depicted in equation 62104... [Pg.425]

Occasionally a colorless solution was obtained at approximately — 50°. In most eases the reaction mixture contained a small quantity of fine suspended black powder (presumably copper metal). Examination of the reaction mixture at this stage by hydrolysis of a sample at —35° and gas chromatographic analysis demonstrated the presence of approximately 10% of 2,4-hexadienes [predominantly the (E),(E)-isomer],... [Pg.109]

Hexadiene, 55, 109 Hexanoic acid, 55, 27 Hexanoie acid, 2-bromo-, 55,30... [Pg.141]

Similar divergences are found for lithium poly-2,4-hexadiene solution (1 10-3 M in living polymers) for which a sixfold decrease of viscosity upon protonation corresponding to a degree of association of 1.7 was reported 113), whereas only a threefold decrease, i.e. a degree of association of 1.4 was indicated earlier 1,8). The difference between the 1.7 and 1.4 values was tentatively attributed to a slow decomposition of the active ends over a period of two weeks U8) notwithstanding their reported good... [Pg.124]

The first studies on cation-radical Diels-Alder reactions were undertaken by Bauld in 1981 who showed [33a] the powerful catalytic effect of aminium cation radical salts on certain Diels-Alder cycloadditions. For example, the reaction of 1,3-cyclohexadiene with trans, iraw5-2,4-hexadiene in the presence of Ar3N is complete in 1 h and gives only the endo adduct (Equation 1.14) [33]. [Pg.9]

These reactions, called electrocyclic rearrangements, take place by pericyclic mechanisms. The evidence comes from stereochemical studies, which show a remarkable stereospecificity whose direction depends on whether the reaction is induced by heat or light. For example, it was found for the thermal reaction that cis-3,4-dimethylcyclobutene gave only cw,tran5-2,4-hexadiene, while the trans isomer gave only the trans-trans diene... [Pg.1427]

A strong acceptor TCNE undergoes [2+2] rather than [4+2] cycloaddition reactions even with dienes. 1,1-Diphenylbutadiene [20] and 2,5-dimethyl-2,4-hexadiene (Scheme 5) [21] afford mainly and exclusively vinyl cyclobutane derivatives, respectively. In the reactions of 2,5-dimethyl-2,4-hexadiene (1) the observed rate constant, is greater for chloroform solvent than for a more polar solvent, acetonitrile (2) the trapping of a zwitterion intermediate by either methanol or p-toluenethiol was unsuccessful (3) radical initiators such as benzyl peroxide, or radical inhibitors like hydroquinone, have no effect on the rate (4) the entropies of activation are of... [Pg.29]


See other pages where 1,5 Hexadien is mentioned: [Pg.566]    [Pg.477]    [Pg.477]    [Pg.477]    [Pg.474]    [Pg.474]    [Pg.419]    [Pg.644]    [Pg.216]    [Pg.606]    [Pg.751]    [Pg.774]    [Pg.209]    [Pg.923]    [Pg.566]    [Pg.202]    [Pg.513]    [Pg.513]    [Pg.1182]    [Pg.1184]    [Pg.1184]    [Pg.1184]    [Pg.1185]    [Pg.109]    [Pg.110]    [Pg.904]    [Pg.124]    [Pg.252]    [Pg.2310]    [Pg.129]   
See also in sourсe #XX -- [ Pg.3 ]

See also in sourсe #XX -- [ Pg.3 ]

See also in sourсe #XX -- [ Pg.3 ]

See also in sourсe #XX -- [ Pg.3 ]

See also in sourсe #XX -- [ Pg.11 , Pg.88 ]

See also in sourсe #XX -- [ Pg.3 ]




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1, cis-4-Hexadiene

1,4-Hexadiene synthesis

1,4-Hexadiene synthesis nickel

1,4-Hexadiene synthesis rhodium

1,4-Hexadiene, preparation

1,4-Hexadienes, polymers

1,4-hexadiene, from olefin insertion

1,5-Hexadiene derivatives

1,5-Hexadiene hydrogenation

1,5-Hexadiene photocycloaddition reactions

1,5-Hexadiene rhodium complex

1,5-Hexadiene terminal

1,5-Hexadiene, polymerization

1,5-Hexadiene, sigmatropic shift

1,5-Hexadiene, titanium

1,5-hexadiene, rearrangement

1- Acetoxy-2,4-hexadiene

1- Bromo-2,5-hexadiene

1.3- butadiene/2,4-hexadiene

1.3.4.6- Tetraphenyl-1,5 -hexadiene

1.4- Hexadiene manufacture

1.4- Hexadiene, 2-isopropyl

1.4- Hexadiene, copolymers

1.4- Hexadiene, from butadiene and

1.4- Hexadiene, from butadiene and ethylene

1.5- Hexadien conversion to bromide

1.5- Hexadien synthesis

1.5- Hexadien-3-ones

1.5- Hexadien-3-ones photochemistry

1.5- Hexadiene dicarboxylation

1.5- Hexadiene hydroalumination

1.5- Hexadiene-3,4-diol

1.5- Hexadienes photocycloaddition reactions

1.5- Hexadienes synthesis

1.5- Hexadienes, rearrangements

1.5- hexadiene 3,3-shift

1.5-Hexadiene with metallocene catalysts

2,4-Hexadienal

2,4-Hexadiene Subject

2,4-Hexadiene selective reduction

2,4-Hexadiene-l,6-diols

2,4-Hexadienes, cycloaddition

2-Azabicyclo hexadiene

2-Methyl-l ,5-hexadiene

2.3- Hexadiene, 2,5-dimethylphotocycloaddition reactions anthracene

2.4- Hexadien asymmetric epoxidation

2.4- Hexadien kinetic resolution

2.4- Hexadien substituent effect

2.4- Hexadiene Diels-Alder reactions

2.4- Hexadiene cycloaddition products

2.4- Hexadiene imines

2.4- Hexadiene zirconocene complex

2.4- Hexadiene, 2,5-dimethylcycloaddition reactions 9-cyanoanthracene

2.4- Hexadiene, 2,5-dimethylcycloaddition reactions tetracyanoethylene

2.4- Hexadiene, photocycloaddition with

2.4- Hexadienes

2.5- Dimethyl-2,4-hexadiene

2.5- Diphenyl-2,4-hexadiene

2.5- Diphenyl-l ,5-hexadienes

2.5- dimethyl-2,4-hexadiene, effect

2.5- dimethyl-l,5-hexadiene

2.5.5- Trimethyl-2,3-hexadiene

3- Methyl-1,5-hexadiene

3-Hydroxy-l,5-hexadienes

3-Phenyl-l,5-hexadiene

3-methylene-1,5-hexadiene

3-vinyl-1,5-hexadiene

Anthracene, 9-cyanophotocycloaddition reactions 2.5- dimethyl-2,4-hexadiene

Anthracenes 2.5- dimethyl-2,3-hexadiene

Bicyclo hexadiene

Bicyclo hexadiene reduction

Bicyclo hexadiene synthesis

Cationic hexadiene

Cationic polymerization hexadiene

Chloro-l,2-hexadiene

Cis,trans-2,4-HEXADIENE.153(Vol

Cope 1,5-hexadienes

Cope rearrangement 1,5-hexadiene

Cope rearrangement 1,5-hexadiene, energies

Cope rearrangement 1,5-hexadiene, geometry

Cope rearrangement of 1,5-hexadiene

Correspondence diagram for the Cope rearrangement of hexadiene

Cyclo-hexadiene

Cyclo-hexadiene, substituted

Diallyl (hexadiene

Ethoxy hexadiene

Ethylene propylene 1,4 hexadiene

F l,5-Hexadien-3-yne

Hexadien-2-yn-l-ol

Hexadienals

Hexadiene

Hexadiene

Hexadiene complexes

Hexadiene complexes with iron

Hexadiene complexes with rhodium

Hexadiene complexes with silver

Hexadiene isomerization

Hexadiene isomerization product

Hexadiene phenoxyimine

Hexadiene polymers, molecular

Hexadiene polymers, molecular weight distribution

Hexadiene, - and

Hexadienes 1,2-cycloaddition with

Hexadienes 2.3- hexadiene

Hexadienes 2.3- hexadiene

Hexadienes ADMET polymerization

Hexadienes copolymerization

Hexadienes cyclopolymerization

Hexadienes from photolysis

Hexadienes from pyrolysis

Hexadienes isomerization

Hexadienes polymerizations

Hexadienes radical cations

Hexadienes radiolysis

Hexadienes reactions with hydrogen atoms

Hexadienes structure

Hexadienes, Cope rearrangement

Hexadienes, pericyclic rearrangements

Hexadienic acid

Hexamethylbicyclo hexadiene

Hexene hexadienes

L, 3-Hexadiene

L,5-Hexadien

L,5-Hexadiene-3-ols

L-Bromo-2,5-hexadiene

Monohydroboration 1,3-hexadiene

Oxy-Cope rearrangements 3-hydroxy-1,5-hexadienes

Phenyl-1,5-hexadiene

Phosphorus tribromide, reaction with 1,5-hexadien

Poly hexadiene

Polyene 1,5-hexadiene

Polymerization 1,5-hexadiene with metallocene catalysts

Polymers of 1,4-hexadienes

Pyridines hexadienes

Rearrangement of Bridged Hexadienes

Rearrangement, of: (cont hexadienes

Silylenes hexadienes

Trans-Hexadiene polymer

Trans-l,4-Hexadienes

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