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Anthrone, alkylation

Accordingly, the cyclopropenylidene anthrones 190/198 were converted by ferric chloride in hydroxylic solvents to the allene ketal 466, whose hydrolysis gives the allenic ketone 46 7288. The dioxolane 468 was obtained from the alkyl-substituted quinocyclopropene 190 in glycol and the ketone 467 in methanol. Apparently FeCl3 served not only as an oxidant, but also as a Lewis acid assisting solvent addition to C1 2 of the triafulvene. [Pg.95]

Tetralone is readily mono- or di-alkylated at the 1-position to the exclusion of O-alky lation with a range of alkylating agents under liquiddiquid two-phase conditions without an added solvent [24], Similarly, it has been reported that anthrone undergoes mono- and di-C-alky lation at the 10-position with propargyl and allyl halides to the almost complete exclusion of O-alkylation [25]. It has been claimed that methyl-ation yields 9-methoxyanthracene [26],... [Pg.234]

Regiospecific mono-C-alkylation (60-90%) of trimethylsilyl enol ethers is promoted by benzyltriethylammonium fluoride [34, 35]. A similar alkylation of tin(IV) enolates is aided by stoichiometric amount of tetra-n-butylammonium bromide and has been utilized in the synthesis of y-iminoketones [36]. Carbanions from weakly acidic carbon acids can be generated by the reaction of their trimethylsilyl derivatives with tetra-n-butylammonium triphenyldifluorosilicate [37] (see also Section 6.3). Such carbanions react readily with haloalkanes. Tautomeric ketones in which the enol form has a high degree of stabilization are O-alkylated to form the enol ether, e.g. methylation of anthrone produces 9-methoxyanthracene [26],... [Pg.238]

DR Dimmel, D Shepard. Regioselective Alkylations of Anthrahydroquinone and Anthrone in Water with Quinonemethides and Other Alkylating Agents. J Org Chem 47 22, 1982. [Pg.384]

The biogenesis of barbaloin has not yet been studied, but its synthesis gives rise to some legitimate speculations thereon. A phenoxide ion can be alkylated on an oxygen atom or on a carbon atom, as shown in the reaction sequence below which reaction predominates depends on the phenol, the conditions employed, and the alkylating agent used. The glycosylation of the anion from aloe-emodin anthrone is an example of reaction b, whereas... [Pg.234]

Anthrone shows great selectivity in its alkylation (150, 151) producing 9-alkoxyanthracenes with alkyl sulfonates, on the one hand, and 10-alkyl- and 10,10-dialkylanthrones with alkyl halides, on the other. Although benzoins form enediol derivatives readily (e.g., with chloral), exclusive C-alkylation with alkyl halides is observed (152). [Pg.46]

Anthrones [204] and 3-substituted oxindoles [205] possess activated methylenes which have been able to react under asymmetric iminium catalysis with a,p-unsaturated aldehydes. The reaction with 3-substituted oxindoles is especially attractive, since chiral quaternary stereocenters are generated. For this purpose, chiral primary amine thiourea catalyst 132 has been demonstrated as a very efficient promoter for the addition of 3-alkyl substituted oxindoles to P-aryl substituted enals in the presence of benzoic acid as cocatalyst in toluene at rt to afford the corresponding Michael adducts in good diastereoselectivities (dr up to >19/1) and good enantioselectivities (73-93% ee) (Scheme 2.75) [205a], P-Alkyl substituted enals are not suitable partners for the reaction affording very low diastereo- and enanti-... [Pg.111]


See other pages where Anthrone, alkylation is mentioned: [Pg.190]    [Pg.83]    [Pg.84]    [Pg.217]    [Pg.516]    [Pg.492]    [Pg.669]    [Pg.761]    [Pg.761]    [Pg.516]    [Pg.261]    [Pg.128]    [Pg.423]    [Pg.461]    [Pg.56]    [Pg.331]    [Pg.761]    [Pg.433]   
See also in sourсe #XX -- [ Pg.46 ]




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Anthrone

Anthrones

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