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Reactions with Cyclopentadiene

Cyclopentadiene reaction with HCN, 33 19, 20 vibrational spectra, 42 243 Cyclopentane... [Pg.85]

The reactions are very fast, and halide ion addition always leads to 77-allylpalladium halide dimers. The cyclopentadienyl moiety has been isolated in the form of cyclopentadiene (reaction with hydrogen chloride), or as a carboxylic acid dimer (reaction with BuLi -f CO2). That part of the attacking reagent bearing positive charge always combines with the C5H5... [Pg.388]

C, b.p. 170 C (decomp.), has a characteristic odour. It is the Diels-Alder product of cyclopentadiene reacting with itself, the exo-form being formed most rapidly but the endo-form is thermodynamically favoured. At temperatures above ISO C a retro-Diels-Alder reaction occurs and cyclopentadiene monomer is regenerated see diene reactions. [Pg.135]

Fortunately, azachalcone derivatives (2.4a-g, Scheme 2.4) turned out to be extremely suitable dienophiles for Lewis-add catalysed Diels-Alder reactions with cyclopentadiene (2.5). This reaction is outlined in Scheme 2.4 and a large part of this thesis will be devoted to the mechanistic details of this process. The presence of a chromophore in 2.4 allows kinetic studies as well as complexation studies by means of UV-vis spectroscopy. Furthermore, the reactivity of 2.4 is such that also the... [Pg.49]

Fortunately, in the presence of excess copper(II)nitrate, the elimination reaction is an order of magnitude slower than the desired Diels-Alder reaction with cyclopentadiene, so that upon addition of an excess of cyclopentadiene and copper(II)nitrate, 4.51 is converted smoothly into copper complex 4.53. Removal of the copper ions by treatment with an aqueous EDTA solution afforded in 71% yield crude Diels-Alder adduct 4.54. Catalysis of the Diels-Alder reaction by nickel(II)nitrate is also... [Pg.116]

The allyl-substituted cyclopentadiene 122 was prepared by the reaction of cyclopentadiene anion with allylic acetates[83], Allyl chloride reacts with carbon nucleophiles without Pd catalyst, but sometimes Pd catalyst accelerates the reaction of allylic chlorides and gives higher selectivity. As an example, allylation of the anion of 6,6-dimethylfulvene 123 with allyl chloride proceeded regioselectively at the methyl group, yielding 124[84]. The uncatalyzed reaction was not selective. [Pg.308]

Maleic anhydride has been used in many Diels-Alder reactions (29), and the kinetics of its reaction with isoprene have been taken as proof of the essentially transoid stmcture of isoprene monomer (30). The Diels-Alder reaction of isoprene with chloromaleic anhydride has been analy2ed using gas chromatography (31). Reactions with other reactive hydrocarbons have been studied, eg, the reaction with cyclopentadiene yields 2-isopropenylbicyclo[2.2.1]hept-5-ene (32). Isoprene may function both as diene and dienophile in Diels-Alder reactions to form dimers. [Pg.463]

In a study of the relative rates of addition of 20 dienophiles to cyclopentadiene, TCNE was at the head of the Hst, eg, it added 7700 times as rapidly as maleic anhydride (15). Reaction with most 1,3-dienes takes place rapidly and in high yield at room temperature. TCNE has often been used to characterize 1,3-dienes, including those that are unstable and difficult to isolate (16). [Pg.404]

Cyclopentadiene contains conjugated double bonds and an active methylene group and can thus undergo a Diels-Alder diene addition reaction with almost any unsaturated compound, eg, olefins, acetylene, maleic anhydride, etc. The number of its derivatives is extensive only the reactions and derivatives considered most important are discussed. [Pg.429]

Reduction of indolenines with sodium and ethanol gives indolines. The pentachloropyr-role, obtained by chlorination of pyrrole with sulfuryl chloride at room temperature in anhydrous ether, was shown by spectroscopic methods to have an a-pyrrolenine (2H-pyrrole) structure (222). It is necessary, however, to postulate that it is in equilibrium with small but finite amounts of the isomeric /3-pyrrolenine form (3//-pyrrole 223), since pentachloropyrrole functions as a 2-aza- rather than as a 1-aza-butadiene in forming a cycloadduct (224) with styrene (80JOC435). Pentachloropyrrole acts as a dienophile in its reaction with cyclopentadiene via its ene moiety (81JOC3036). [Pg.84]

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]

A similar transformation results when trimethylsilyloxy-substituted allylic halides react with silver perchlorate in nitromethane. The resulting allylic cation gives cycloaddition reactions with dienes such as cyclopentadiene. The isolated products result from desilyla-tion of the initial adducts ... [Pg.645]

In a definitive study of butadiene s reaction with l,l-dichloro-2,2-difluoio-ethylene, Bartlett concluded that [2+4] adducts of acyclic dienes with fluorinated ethylenes are formed through a mixture of concerted and nonconcerted, diradical pathways [67] The degree of observed [2+4] cycloaddition of fluorinated ethylenes IS related to the relative amounts of transoid and cisoid conformers of the diene, with very considerable (i.e., 30%) Diels-Alder adduct being observed in competition with [2+2] reaction, for example, in the reaction of 1,1 -dichloro-2,2-difluoro-ethylene with cyclopentadiene [9, 68]... [Pg.818]

On the other hand, Chambers found that the related perfluorobiscyclobut-yhdene undergoes Diels-Alder reactions with butadiene, cyclopentadiene, and furan [79, 56] (equation 71) Such enhanced reactivity may be due to strain in the substrate... [Pg.821]

Allene itself is not a good dienophile, its reaction with cyclopentadiene requires temperatures of >200 °C and gives a 49% yield [90] Fluoraallene and 1,1-difluoroaIIene are much more reactive dienophiles, the latter reacting instantly and quantitatively at -20 °C [91, 92], and the former taking 4 days to react quantitatively with cyclopentadiene at 0 °C [25, 27, 93] (equation 78)... [Pg.824]

Allenes carrying trifluoromethyl groups, such as l,l-dichloro-3,3-bis(tn fluoromethyl)allene, undergo facile, room-temperature Diels-Alder reactions with cyclopentadiene (87%) and furan (95%) [94]... [Pg.825]

Subsbtuting vinylic hydrogen in a,P-unsaturated carbonyl compounds with vinylic fluonne does not affect their dienophilic character negatively Indeed, 3,3-difluoroacrylic acid is more reactive toward furan than its nonfluonnated counterpart [95] (equation 81) Consistent with this observation is the fact that tctrafluorobenzoquinone forms only a bis-Diels-Alder adduct m 68% yield in its reaction with cyclopentadiene at room temperature [96, 97 ... [Pg.825]

Compare electrostatic potential maps for the following Diels-Alder transition states cyclopentadiene+ethene, cyclopentadiene+acrylonitrile and cyclopentadiene+ tetracyanoethylene, with those of reactants cyclopentadiene, ethene, acrylonitrile and tetracyanoethylene. Are electrons transferred from diene to dienophile in the transition states (relative to reactants) or vice versa For which reaction is the transfer the greatest The least Quantify your conclusion by measuring the total charge on the diene and dienophile components in the three transition states. [Pg.274]


See other pages where Reactions with Cyclopentadiene is mentioned: [Pg.604]    [Pg.675]    [Pg.604]    [Pg.675]    [Pg.8]    [Pg.23]    [Pg.66]    [Pg.114]    [Pg.119]    [Pg.177]    [Pg.405]    [Pg.157]    [Pg.160]    [Pg.430]    [Pg.279]    [Pg.281]    [Pg.685]    [Pg.685]    [Pg.820]    [Pg.405]    [Pg.196]   


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1,3-Cyclopentadiene reaction with hydrogen

Alder reaction with cyclopentadiene

Benzoquinone, reaction with cyclopentadiene

Cyclopentadiene Diels-Alder reaction with

Cyclopentadiene reaction with acrylates

Cyclopentadiene reaction with hydrogen chloride

Cyclopentadiene reaction with ketene

Cyclopentadiene reaction with tropone

Cyclopentadiene reaction: with basic metals

Cyclopentadiene, Diels-Alder reaction with methyl acrylate

Cyclopentadiene, oxidative cycloaddition reaction with

Cyclopentadiene, reactions

Cyclopentadiene, reactions with metal

Cyclopentadiene, reactions with metal atoms

Cyclopentadienes reaction

Cyclopentadienes reactions with

Cyclopentadienes reactions with

Diels-Alder Reaction Butenone with cyclopentadiene, aqueous

Diels-Alder reaction cyclopentadiene with methyl

Diels-Alder reactions of cyclopentadiene with dienophile

Diethyl azodicarboxylate, reaction with cyclopentadiene

Esters, acrylate reaction with cyclopentadiene

Methyl methacrylate reaction with cyclopentadiene

Oxazoline reaction with cyclopentadiene

Reaction with Cyclopentadiene and Other Olefins

Takano s reaction with cyclopentadiene

The Diels—Alder Reaction of Cyclopentadiene with Maleic Anhydride

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