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Tropolone, reactions

The cyclic enolate-type anions 35, 39 and 42, prepared from 4-methyl-2-phenyloxazol-5(4/7)-one,< t.62 2-chlorotropone, " and ) -tropolone, respectively, added to the cyclo-propenylium ions at the enolate carbon. Product 43 from the -tropolone reaction further underwent an intramolecular [4 + 2] reaction to give the cage compound 45. ... [Pg.3149]

Cyclo ddltion. Ketenes are ideal components ia [2 + 2] cycloadditions for additions to the opposite sides of a TT-system as shown ia the cyclobutane product (2) ia Figure 1. Electron-rich double bonds react readily with ketenes, even at room temperature and without catalysts. In conjugated systems, ketenes add ia a [2 + 2] fashion. This is illustrated ia the reaction foUowiag, where the preferential orientation of L (large substituent) and S (small substituent) is seen (40). This reaction has been used ia the synthesis of tropolone [533-75-5]. [Pg.474]

Tropolone has been made from 1,2-cycloheptanedione by bromination and reduction, and by reaction with A -bromosuccinimide from cyolo-heptanone by bromination, hydrolysis, and reduction from diethyl pimelate by acyloin condensation and bromination from cyclo-heptatriene by permanganate oxidation from 3,5-dihydroxybenzoic acid by a multistep synthesis from 2,3-dimethoxybenzoic acid by a multistep synthesis from tropone by chlorination and hydrolysis, by amination with hydrazine and hydrolysis, or by photooxidation followed by reduction with thiourea from cyclopentadiene and tetra-fluoroethylene and from cyclopentadiene and dichloroketene. - ... [Pg.120]

The add-catalyzed cyclodehydration of (Z)- and ( )-6-hydroxy-a,p-unsaturared ketones offers a mild synthesis of substituted furans. In the case of ( )-olefins, photochemical isomerisation was found to accelerate the reaction <96TL6065>. Reaction of alkynyl(phenyl)iodonium tetrafluoroborates with tropolone in the presence of a base yields 2-substituted furotropones (Scheme 16, <96TL5539>). [Pg.129]

Similar irradiation of the 1 1 complex of tropolone ether 10b and host compound 8 led to photoproducts 11b (100% ee) and 12b (72% ee) in 12 and 14% yields, respectively. The authors interpreted these reactions as follows disrotatory electrocyclic closure of tropolone derivative 10 to afford photoproduct 11 in the inclusion crystals occurs in only one direction owing to the steric hindrance of host 8. This interpretation appeared to be reasonable based on an examination of the X-ray crystal structure study of the inclusion complex [18]. Formation of keto-ester 12 takes place by a more complex mechanism... [Pg.6]

In addition to tropones, a few tropolones have been synthesized by reactions similar to those given in Scheme 2 and Table I. Hydroxyl substituents vicinal to carbonyl groups have been generated by hydrolysis of dibromo intermediates of type 5a (78BCJ3579) and by dehydrogenation of fused cyclohepten-3,4-diones [55LA(595)203] or their monoximes [70JPR(312)466] (by Pd-charcoal or spontaneously, respectively). [Pg.88]

Reaction of tropolone with p-benzoquinone and spontaneous dehydrogenation yield 3-(p-benzoquinonyl)tropolone (106), which is hydrogenated and cyclized to give benzofurotropone 107 (62BCJ349, 62MI1). [Pg.105]

The complexes [Ru(bpy)2L]+ (HL = acetylacetone, trifluoroacetylacetone, hexafluoroacetylace-tone, tropolone or dibenzoylmethane) have been prepared and characterized they act as catalysts for the oxidation of alcohols, 3,5-di-tert-butylcatechol and alkanes in the presence of appropriate co-oxidants." Perchlorate salts of [Os(bpy)2L] in which HL = salicylaldehyde, 2-hydroxyaceto-phenone or 2-hydroxynaphthaldehyde, are formed from reactions of [Os(bpy)2Br2] with HL. The structure of the salicylaldehyde derivative has been determined. Chemical and electrochemical oxidations of [Os(bpy)2L]" yield the corresponding low-spin Os species from which [Os(bpy)2L]+ can be regenerated." " [Ru(bpy)2L]" (HL = salicylic acid) has been prepared and structurally characterized as the tetrahydrate. Absorptions at 590 nm, 400 nm, and 290 nm in the electronic spectrum have been assigned to Ru bpy CT transitions electrochemical oxidations of the complex have been investigated." ... [Pg.588]

Theoretically, the regioselectivity observed in photochemical [2 + 2] cycloaddition of 56 with 1,1-dimethoxyethene is in good agreement with experimental results and has been explained on the basis of pertubational molecular orbital theory." Hartke and co-workers" described an interesting contrast in the reactivity of tropolones in an intramolecular Diels-Alder reaction (Scheme 6.18). Thus, alkylation of 64a and 64b with 65 gave 66a and 66b, respectively, that were subjected to cyclization in refluxing toluene. Whereas 66a decomposed under the reaction conditions, 66b afforded 67b in high yield. [Pg.67]


See other pages where Tropolone, reactions is mentioned: [Pg.139]    [Pg.139]    [Pg.248]    [Pg.128]    [Pg.152]    [Pg.317]    [Pg.450]    [Pg.167]    [Pg.56]    [Pg.1100]    [Pg.85]    [Pg.36]    [Pg.784]    [Pg.9]    [Pg.44]    [Pg.10]    [Pg.11]    [Pg.11]    [Pg.86]    [Pg.105]    [Pg.112]    [Pg.121]    [Pg.122]    [Pg.123]    [Pg.265]    [Pg.171]    [Pg.242]    [Pg.243]    [Pg.243]    [Pg.47]    [Pg.134]   
See also in sourсe #XX -- [ Pg.66 , Pg.327 ]

See also in sourсe #XX -- [ Pg.66 , Pg.327 ]




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