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Conjugated unsaturated systems Diels-Alder reaction

Compounds containing a double or triple bond, usually activated by additional unsaturation (carbonyl, cyano, nitro, phenyl, etc.) In the ap position, add to the I 4-positions of a conjugated (buta-1 3-diene) system with the formation of a ax-membered ring. The ethylenic or acetylenic compound is known as the dieTwphile and the second reactant as the diene the product is the adduct. The addition is generally termed the Diels-Alder reaction or the diene synthesis. The product in the case of an ethylenic dienophile is a cyctohexene and in that of an acetylenic dienophile is a cyctohexa-1 4-diene. The active unsaturated portion of the dienophile, or that of the diene, or those in both, may be involved in rings the adduct is then polycyclic. [Pg.941]

The reaction is carried out simply by heating a diene or another conjugated system of n bonds with a reactive unsaturated compound (dienophile). Usually the reaction is not sensible to catalysts and light does not affect the course. Depending on the specific components, either carboxylic or heterocyclic products can be obtained. The stereospecificity of the reaction was firmly established even before the importance of orbital symmetry was recognized. In terms of orbital symmetry classification, the Diels-Alder reaction is a k4s + n2s cycloaddition, an allowed process. [Pg.44]

The addition reactions take place at a carbon-carbon multiple bond, or carbon-hetero atom multiple bond. Because of this peculiarity, the addition reactions are not common as the first step in pyrolysis. The generation of double bonds during pyrolysis can, however, continue with addition reactions. The additions can be electrophilic, nucleophilic, involving free radicals, with a cyclic mechanism, or additions to conjugated systems such as Diels-Alder reaction. This type of reaction may explain, for example, the formation of benzene (or other aromatic hydrocarbons) following the radicalic elimination during the pyrolysis of alkanes. In these reactions, after the first step with the formation of unsaturated hydrocarbons, a Diels-Alder reaction may occur, followed by further hydrogen elimination ... [Pg.18]

The Diels-Alder cycloaddition is an important reaction class involving the reaction of unsaturated carbonyl compounds with conjugated dienes. The carbon atoms at the 1- and 4-positions of the conjugated diene system become attached to the doubly bonded carbons of the unsaturated carbonyl compound to form a ring stiucture. Diels-Alder chemistry is used in the synthesis of a variety of complex organic compounds of commercial interest, including insecticides, fragrances, plasticizers, and dyes (92). These bimolecular reactions have been used... [Pg.148]


See other pages where Conjugated unsaturated systems Diels-Alder reaction is mentioned: [Pg.90]    [Pg.337]    [Pg.368]    [Pg.30]    [Pg.4]    [Pg.876]    [Pg.337]    [Pg.337]    [Pg.4]    [Pg.42]    [Pg.876]    [Pg.310]    [Pg.28]    [Pg.706]    [Pg.190]    [Pg.113]    [Pg.586]    [Pg.49]    [Pg.473]    [Pg.49]    [Pg.264]    [Pg.283]    [Pg.391]    [Pg.1306]    [Pg.81]   
See also in sourсe #XX -- [ Pg.62 , Pg.63 ]

See also in sourсe #XX -- [ Pg.62 , Pg.63 ]




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Conjugate reaction

Conjugate system

Conjugated reaction

Conjugated system conjugation)

Conjugated systems

Conjugated systems Diels-Alder reactions

Conjugated unsaturated system

Conjugated unsaturation

Conjugative reactions

Reactions unsaturated

Unsaturated Diels-Alder

Unsaturated Diels-Alder reaction

Unsaturated system Diels-Alder reaction

Unsaturated system reactions

Unsaturated systems

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