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6- fulvene

The first study was made on the benzene molecule [79], The S ISi photochemistry of benzene involves a conical intersection, as the fluorescence vanishes if the molecule is excited with an excess of 3000 crn of energy over the excitation energy, indicating that a pathway is opened with efficient nonradiative decay to the ground state. After irradiation, most of the molecules return to benzene. A low yield of benzvalene, which can lead further to fulvene, is, however, also obtained. [Pg.302]

In a photochemical experiment, irradiation of benzene leads to Sj, which connects to the ground-state surface via the conical intersection shown. Benzene, the much more stable species, is expected to be recovered preferentially, but the prebenzvalene structure which hansfomis to benzvalene is also fomied. Another possible route from the prebenzvalene, along a different coordinate, will lead to fulvene [90, p.357] after a hydrogen-atom transfer from... [Pg.373]

Interesting formation of the fulvene 422 takes place by the reaction of the alkenyl bromide 421 with a disubstituted alkyne[288]. The indenone 425 is prepared by the reaction of o-iodobenzaldehyde (423) with internal alkyne. The intermediate 424 is formed by oxidative addition of the C—H bond of the aldehyde and its reductive elimination affords the enone 425(289,290]. [Pg.186]

R = vinyl. With aromatic substituents the fulvenes ate deep ted. The aldehyde condensation products ate also strongly colored but tesinify so easily that it is difficult to isolate them in the pure form. [Pg.431]

Oxidation of thiophene with peracid under carefully controlled conditions gives a mixture of thiophene sulfoxide and 2-hydroxythiophene sulfoxide. These compounds are trapped by addition to benzoquinone to give ultimately naphthoquinone (225) and its 5-hydroxy derivative (226) (76ACS(B)353). The further oxidation of the sulfoxide yields the sulfone, which may function as a diene or dienophile in the Diels-Alder reaction (Scheme 88). An azulene synthesis involves the addition of 6-(A,A-dimethylamino)fulvene (227) to a thiophene sulfone (77TL639, 77JA4199). [Pg.84]

Alkylthio groups are replaced in nucleophilic substitutions. Such reactions are easy in cationic derivatives for example, in the 1,2-dithiolylium series (539), substituted cydopen-tadienyl ion gives fulvene derivatives (540) (66AHC(7)39). 2-Methylthio groups in... [Pg.103]

SKATTEB0L DihalocydapropaneRearrangemant Rearrangement of gem-ditialocyclopropanes to ailenes or of vinyt dihalocyclopropanes to eyciopentadienes and fulvenes by MeU... [Pg.349]

Cyclohexylidene fulvene [3141-04-6] M 134.2. Purified by column chromatography and eluted with -hexane [Abboud el al. J Am Chem Soc 109 1334 1987]. [Pg.180]

The resins tend to be dark in colour and it has been suggested that this is due to a fulvenation process involving the unsaturated end group of a polymer molecule. Hydrogenation of the polymer molecule, thus eliminating unsaturation, helps to reduce discolouration. [Pg.471]

Irradiation of benzene and certain of its derivatives results in bond reorganization and formation of nonaromatic products. Irradiation of liquid benzene with light of 254-nm wavelength results in the accumulation of fulvene and a very small amount of tricy-clo[3.1.0.0 ]hex-3-ene, also known as benzvalene. The maximum conversion to this product in liquid benzene is about 0.05%. The key intermediate is believed to be a biradical formed by 1,3-bonding. [Pg.779]

Fulvene-type enamines, which possess some nonbenzenoid aromatic character, have been synthesized by treating cyclopentadienylsodium with an amide-dimethyl sulfate eomplex (117aJ17b) or quaternary pyridinium salts (117c). One of the simplest ones produced is 6-(dimethylamino)fulvene (117a,117d). [Pg.90]

Bu4N F , n-CgHi7SH, 92-100% yield.The thiol is used to scavenge the liberated fulvene... [Pg.507]

This division is not possible for other hydrocarbons such as fulvene and hepta-fulvene (Figure 7.5). [Pg.127]

Tlie name fulvaleiie was first mentioned by R. Brown (49TFS296), who expanded the class of fulvenes for those compounds containing two cyclic poly-enic systems with a central double bond. Tlius, depending on the ring size, cy-clopropylidenecyclopropene 1, fulvaleiie 2, heptafulvalene 3 and the unsymmetrical hybrid molecules triapentafulvalene (calicene) 4, triaheptaful-valene 5, and pentaheptafulvalene (sesquifulvalene) 6 are members of this class of cyclic cross-conjugated systems (Scheme 1). [Pg.116]

Cycloaddition of 4-acylsubstituted fulvene 425 with the imine 427 in boiling toluene gave the tricyclic pyrroline 428. Treatment of 426 with 427 and subsequent reaction of the product 429 with malononitrile gave 428 (86S908) (Scheme 72). [Pg.123]

B. 6-(Dimetkylamino)fulvene. A 1-1. four-necked flask is equipped with mechanical stirrer, dropping funnel with calcium... [Pg.52]

The crude product is crystallized after treatment with activated carbon from ca. 1.5 1. of petroleum ether (b.p. 60-80°) or 800 ml. of cyclohexane. From the orange-yellow solution 84 g. (69%) of 6-(dimethylamino)fulvene separates in yellow leaflets, m.p. 67-68° (Note 4). Concentration of the filtrate and further recrystallization of the residue from petroleum ether or cyclohexane gives an additional 8 g. of product. The combined yield is 92 g. (76%). [Pg.53]

Dimethylamino)fulvene is light-sensitive and is stored in brown bottles. [Pg.53]

This procedure illustrates formylation by N,N-dimethylamino-methoxymethylium methyl sulfate, a compound which can be produced readily by reaction of easily available materials. 6-(Dimethylamino)fulvene is a useful intermediate for the synthesis of various f used-ring nonbenzenoid aromatic compounds. [Pg.54]

Dimethylamine, reaction with phosphorus trichloride, 46, 42 f-Dimethylami nobenzaldehyde, conversion to 0,/9-dichloro- -dimethyl-aminostyrene, 46, 34 tn-Dimethylaminobenzoic acid, 47, 71 /5-Dimethylaminobenzoic acid, 47, 71 6.(Dimethylamino)fulvene, 47, 52 -Dimethylaminophenylacetic acid, 47, 71... [Pg.127]

Phenylcyclopent[c]azcpine (33a) and 6,7-fused cyclopentazepines 33b-d are formed in moderate yields in a one-pot, two-stage process involving initial condensation of triphenyl-[(l-phenylvinyl)imino]phosphoranes 32 with 6-(dimethylamino)fulvene-2-carbaldehyde (30), followed by an intramolecular aza-Wittig reaction of the iminophosphorane with the pendant aldehyde function.5 The method fails with the unsubstituted vinylphosphorane 32 (R1 = R2 = H). [Pg.122]


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1,3-Butadiene, 2-ethyldiethylaminocycloaddition reactions fulvenes

1.3- Dipoles fulvenes

4-Acylsubstituted fulvene, cycloaddition

4-Acylsubstituted fulvene, cycloaddition reactions

6,6 Dimethyl fulvene reaction

6- fulvene, reaction

6- fulvene, reaction aldehydes with

6- fulvene, reaction synthesis

6-Aryl fulvenes

6-dimethylamino-6- fulvene

Amino fulvenes

Azirines fulvenes

Benzenes fulvene generation

Benzocyclobutene, cycloaddition reactions fulvenes

Benzocyclobutenes fulvenes

Benzonitrile oxide fulvenes

Carbanions fulvene

Constructing Molecular Complexity and Diversity by Cycloaddition Reactions of Fulvenes

Cross Conjugation: Dendralene, Radialene and Fulvene Chemistry, First Edition

Cyclic fulvenes

Cycloadditions fulvenes

Cyclopentadiene fulvene formation

Cyclopentadienes fulvenes

Cyclopentadienone, 2,5-dimethyl-3,4-diphenylcycloaddition reactions fulvenes

Diazomethane fulvenes

Dienes fulvenes

Dimethyl fulvene

Dipolarophiles fulvenes

Dipole moment fulvene

Energy fulvene

Fulven

Fulven

Fulvene and Spiroannelated Cyclopentadiene Derivatives

Fulvene complex

Fulvene derivative

Fulvene dianions

Fulvene enamines

Fulvene generation

Fulvene resonance energy

Fulvene rings

Fulvene titanium complex

Fulvene, 2,3-diformyl-6-dimethylaminoKnoevenagel reaction

Fulvene, 6,6-dialkyl cycloaddition reactions

Fulvene, 6,6-dimethylcycloaddition reactions

Fulvene, 6,6-dimethylcycloaddition reactions benzocyclobutenes

Fulvene, 6,6-dimethylcycloaddition reactions dienes

Fulvene, 6,6-dimethylcycloaddition reactions nitropyridyl betaines

Fulvene, 6,6-dimethylcycloaddition reactions retro Diels-Alder reaction

Fulvene, 6,6-dimethylcycloaddition reactions tropones

Fulvene, 6,6-diphenylcycloaddition reactions

Fulvene, 6,6-diphenylcycloaddition reactions dienes

Fulvene, 6- cycloaddition reactions

Fulvene, 6- cycloaddition reactions dienes

Fulvene, 6- cycloaddition reactions thiophenes

Fulvene, 6-aminocycloaddition reactions

Fulvene, 6-aminocycloaddition reactions a-pyrones

Fulvene, 6-methylcycloaddition reactions

Fulvene, 6-methylcycloaddition reactions dienes

Fulvene, 9,10-dihydroDiels-Alder reactions

Fulvene, bis reaction with alcoholates

Fulvene-1,4-dione

Fulvene-6-carboxylate

Fulvenes

Fulvenes 6- - from

Fulvenes addition reactions

Fulvenes anthracene adduct

Fulvenes azepines

Fulvenes complexes

Fulvenes cycloaddition

Fulvenes cycloaddition reactions

Fulvenes heptafulvenes

Fulvenes hydroxy

Fulvenes oxidation

Fulvenes pentafulvenes

Fulvenes preparation

Fulvenes protonation

Fulvenes radical anions

Fulvenes radical cations of, mass spectra

Fulvenes reactions

Fulvenes reactions with carbonyls

Fulvenes reagents

Fulvenes rearrangement

Fulvenes retro Diels-Alder reaction

Fulvenes structure

Fulvenes synthesis

Fulvenes titanium complexes

Fulvenes triafulvenes

Fulvenes via benzene irradiation

Fulvenes via lithium-halogen exchange

Fulvenes with carbenes

Fulvenes, Diels-Alder

Fulvenes, Diels-Alder cycloaddition

Fulvenes, Diels-Alder with

Fulvenes, formylation

Fulvenes, reduction

Fulvenes, tria

Maleic anhydride fulvene trap

Of fulvene

Of fulvenes

Other Fulvenes

Periselectivity reaction with fulvenes

Pyridyl betaine, nitrocycloaddition reactions fulvenes

Rearrangement, of: (cont fulvenes

S. Azulenes, Fulvenes

Syntheses Utilizing Fulvenes

Tetrazine, 3,6-diphenylcycloaddition reactions fulvenes

Tris fulvenes, synthesis

Tropone, 2-chlorocycloaddition reactions fulvenes

Tropones fulvenes

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