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Diels-Alder reaction aromatic compounds

Antimony pentachloride, dehydrating agent, 86 Antioxidants, for rubber maleination, 467 Arbuzov reaction, MA with trialkylphosphites, 232 Aromatic compounds, Diels-Alder diene reactivity, 121... [Pg.822]

Under different conditions [PdfOAcj2, K2CO3, flu4NBr, NMP], the 1 3 coupling product 86 with 4-aryl-9,10-dihydrophenanthrene units was obtained. The product 86 was transformed into a variety of polycyclic aromatic compounds such as 87 and 88[83], The polycyclic heteroarene-annulated cyclopen-tadicnc 90 is prepared by the coupling of 3-iodopyridine and dicyclopentadiene (89), followed by retro-Diels Alder reaction on thermolysis[84]. [Pg.141]

Indoles are usually constructed from aromatic nitrogen compounds by formation of the pyrrole ring as has been the case for all of the synthetic methods discussed in the preceding chapters. Recently, methods for construction of the carbocyclic ring from pyrrole derivatives have received more attention. Scheme 8.1 illustrates some of the potential disconnections. In paths a and b, the syntheses involve construction of a mono-substituted pyrrole with a substituent at C2 or C3 which is capable of cyclization, usually by electrophilic substitution. Paths c and d involve Diels-Alder reactions of 2- or 3-vinyl-pyrroles. While such reactions lead to tetrahydro or dihydroindoles (the latter from acetylenic dienophiles) the adducts can be readily aromatized. Path e represents a category Iley cyclization based on 2 -I- 4 cycloadditions of pyrrole-2,3-quinodimcthane intermediates. [Pg.79]

Acid chloride 5 is readily available from the known benzylic alcohol 6,4e but intermediate 4 is still rather complex. It was recognized that compound 4 could conceivably be formed in one step from 2-methoxyfuran (9)10 and iodotriflate 10. The latter compound was designed with the expectation that it could be converted to benzyne 8," a highly reactive species that could be intercepted in an intermolecular Diels-Alder reaction with 2-methoxyfuran (9) to give 7. The intermediacy of 7 is expected to be brief, for it should undergo facile conversion to the aromatized isomer 4 either in situ or during workup. [Pg.510]

The reactivity of heterocyclic dienes is determined by the nature and number of heteroatoms and, in the case of heteroaromatic compounds, also by the aromatic character. Furans undergo Diels-Alder reactions with strong dienophiles and generally afford cxo-cycloadducts which are thermodynamically more stable than the kinetically favoured c z/o-adducts. [Pg.40]

Dihydrovinylphenanthrenes are more reactive than the corresponding vinyl phenanthrenes and undergo Diels-Alder reactions easily. They have been used in the synthesis of polycyclic aromatic compounds and helicenes. Examples of cycloaddition reactions of the 3,4-dihydro-1-vinylphenanthrene (70), [61] 3,4-dihydro-2-vinylphenanthrene (71) [68] and l,2-dihydro-4-vinylphenanthrene (72) [69] are reported in Equation 2.22 and Schemes 2.27 and 2.28. [Pg.55]

Select one compound from (37) - (40) for synthesis by each of the methods of this chapter Robinson annelation, Diels-Alder reaction, total reduction of aromatics, and Birch reduction. [Pg.430]

In the Diels-Alder reaction with inverse electron demand, the overlap of the LUMO of the 1-oxa-l,3-butadiene with the HOMO of the dienophile is dominant. Since the electron-withdrawing group at the oxabutadiene at the 3-position lowers its LUMO dramatically, the cycloaddition as well as the condensation usually take place at room or slightly elevated temperature. There is actually no restriction for the aldehydes. Thus, aromatic, heteroaromatic, saturated aliphatic and unsaturated aliphatic aldehydes may be used. For example, a-oxocarbocylic esters or 1,2-dike-tones for instance have been employed as ketones. Furthermore, 1,3-dicarbonyl compounds cyclic and acyclic substances such as Meldmm s acid, barbituric acid and derivates, coumarins, any type of cycloalkane-1,3-dione, (1-ketoesters, and 1,3-diones as well as their phosphorus, nitrogen and sulfur analogues, can also be ap-... [Pg.161]

The forerunner in the Co-catalyzed [2+2+2] cycloaddition domino processes was that identified by Vollhardt and colleagues [273], with their excellent synthesis of steroids. Reaction of 6/4-1 with [CpCo(CO)2] gave compound 6/4-3 with an aromatic ring B via the intermediate 6/4-2. In this process, trimerization of the three alkyne moieties first takes place, and this is followed by an electrocyclic ring opening of the formed cyclobutene to give o-quinodimethane. This then undergoes a Diels-Alder reaction to provide the steroid 6/4-3 (Scheme 6/4.1). [Pg.458]

Aromatization is often observed during the Diels-Alder reaction using nitroalkenes. Jung24 and Ono25 have reported that 2-phenylsulfinyl-l-nitroalkenes act as nitroacetylene equivalents in Diels-Alder reactions to give aromatic compounds, as shown in Eqs. 8.14 and 8.15, respectively. [Pg.238]

Another example of the preparing of aromatic compounds via the Diels-Alder reaction of nitroalkenes is presented in Eq. 8.16.26 Cycloaddition of methyl propiolate affords a high yield of the isomeric product. [Pg.238]

Despite the aromatic character, the arylphospholes could also participate in Diels-Alder reactions to give new type of 7-phosphanorbomenes. These products together with phosphanorbomenes obtained by the regio- and stereospecific dimerization of arylphosphole oxides were useful model compounds in the UV light mediated fragmentation-related phosphorylation of alcohols. A novel mechanism was substantiated. [Pg.171]


See other pages where Diels-Alder reaction aromatic compounds is mentioned: [Pg.237]    [Pg.42]    [Pg.27]    [Pg.82]    [Pg.162]    [Pg.2]    [Pg.73]    [Pg.115]    [Pg.160]    [Pg.352]    [Pg.667]    [Pg.121]    [Pg.229]    [Pg.1061]    [Pg.1063]    [Pg.143]    [Pg.368]    [Pg.144]    [Pg.162]    [Pg.247]    [Pg.432]    [Pg.458]   
See also in sourсe #XX -- [ Pg.31 , Pg.628 ]




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Aromatic compounds reverse Diels-Alder reactions

Aromaticity Diels-Alder reactions

Diels-Alder reaction aromatic

Diels-Alder reactions compounds

Photo-Diels-Alder Cycloaddition Reactions of Aromatic Compounds

Polycyclic aromatic compounds Diels-Alder reactions

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