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4- Vinyl 3-pyrrolin-2-ones

Pyridyl)hydrazine (Aldrich), 4-acetylpyridine (Acros), N,N,N -trimethylethylenediamine (Aldrich), methylrhenium trioxide (Aldrich), InQj (Aldrich), Cu(N0j)2-3H20 (Merck), Ni(N03)2-6Il20 (Merck), Yb(OTf)3(Fluka), Sc(OTf)3 (Fluka), 2-(aminomethyl)pyridine (Acros), benzylideneacetone (Aldrich), and chalcone (Aldrich) were of the highest purity available. Borane dimethyl sulfide (2M solution in THE) was obtained from Aldrich. Methyl vinyl ketone was distilled prior to use. Cyclopentadiene was prepared from its dimer immediately before use. (R)-l-acetyl-5-isopropoxy-3-pyrrolin-2-one (4.15) has been kindly provided by Prof H. Hiemstra (University of Amsterdam). [Pg.119]

This method for preparing 2-phenyl-1-pyrroline, and assorted 2-substituted 1-pyrrolines, is one of the best currently available, particularly because it reproducibly affords clean materials. Generally, the procedure is amenable to various aromatic esters 2 it has also been applied successfully to aliphatic esters (Table I).3 An advantage of this method is the use of readily available, inexpensive N-vinyl-pyrrolidin-2-one as a key starting material. This compound serves effectively as a 3-aminopropyl carbanion equivalent. The method illustrated in this procedure has been extended to include the synthesis of 2,3-disubstituted pyrrolines. Thus, alkylation of the enolate of the intermediate keto lactam, followed by hydrolysis, leads to various disubstituted pyrrolines in good yields (see Table II).3... [Pg.110]

N-Vinyl-2-pyrrolin-2-one 2-Pyrrolidinone, 1-vinyl- 2-Pyrrolidinone, 1-ethenyl- (9) ... [Pg.111]

Volume 75 concludes with six procedures for the preparation of valuable building blocks. The first, 6,7-DIHYDROCYCLOPENTA-l,3-DIOXIN-5(4H)-ONE, serves as an effective /3-keto vinyl cation equivalent when subjected to reductive and alkylative 1,3-carbonyl transpositions. 3-CYCLOPENTENE-l-CARBOXYLIC ACID, the second procedure in this series, is prepared via the reaction of dimethyl malonate and cis-l,4-dichloro-2-butene, followed by hydrolysis and decarboxylation. The use of tetrahaloarenes as diaryne equivalents for the potential construction of molecular belts, collars, and strips is demonstrated with the preparation of anti- and syn-l,4,5,8-TETRAHYDROANTHRACENE 1,4 5,8-DIEPOXIDES. Also of potential interest to the organic materials community is 8,8-DICYANOHEPTAFULVENE, prepared by the condensation of cycloheptatrienylium tetrafluoroborate with bromomalononitrile. The preparation of 2-PHENYL-l-PYRROLINE, an important heterocycle for the synthesis of a variety of alkaloids and pyrroloisoquinoline antidepressants, illustrates the utility of the inexpensive N-vinylpyrrolidin-2-one as an effective 3-aminopropyl carbanion equivalent. The final preparation in Volume 75, cis-4a(S), 8a(R)-PERHYDRO-6(2H)-ISOQUINOLINONES, il lustrates the conversion of quinine via oxidative degradation to meroquinene esters that are subsequently cyclized to N-acylated cis-perhydroisoquinolones and as such represent attractive building blocks now readily available in the pool of chiral substrates. [Pg.140]

Photoreaction of l-vinyl-4-alkyl-5-aminotriazolines leads to unexpected pyrrolines and pyrroles.459 The 1-vinylaziridine formed by ring closure of the 1,3-diradical undergoes a selective ring cleavage at one of the C—N bonds (bearing the amino group) followed by cyclization with the j -vinyl carbon to give the products (Scheme 157)459... [Pg.327]

Annelation of steroidal dienamines with substituted phenacyl bromides (7 examples) or with benzenediazonium salts (11 examples) has been shown to lead to the corresponding furano- and indolo-steroids.89 Thus the A3,5-dienamine derived from A4-androstene-3,17-dione reacted with p-bromophenacyl bromide to yield the A5-androstano[3,4-h]furan (199) in 26% yield, and reaction of the same A3,5-dienamine with benzenediazonium fluoroborate at -45 °C led to formation of the hydrazone (200) which underwent Fischer-indole cyclization on treatment with phosphorus oxychloride to produce the A4-androstano[6,7-6]indole (201). The A3,5-dienamine derived from 17/3-acetoxyandrost-4-en-3-one has been converted into the benz[4,5,6]-steroid (202 R1 = Me, R2 = H) by reaction with methyl vinyl ketone and into the analogous benzsteroid (202 R1 = H, R2 = Me) on treatment with crotonal-dehyde.90 A route to the condensed pyrroline ring system (203) has been devised... [Pg.304]

More unusual isosteric replacements for the pwptidic bond were recently proposed (Fig. 13.18). Among them hydroxyethylureas served in the design of a novel class of potent HTV-1 protease inhibitors, diacylcyclopropanes in the design of novel renin inhibitors, and pyrroline-3-ones for various proteolytic enzyme inhibitors. Vinyl fluorides can probably be considered as representing the closest possible bioisosteres of the peptide bond. The synthetic methods available allow, by an appropriate selection of... [Pg.202]

Clayden and coworkers reported intramolecular Michael-addition— fragmentation leading to 3-vinyl- and 3-aryl-substituted 3-pyrrolin-2-ones (20040L609). For example, treatment of the carboxamide 178 (DEB = 1,1-diethylbutylcarbonyl) with LDA gives 3-pyrrolin-2-one 180 through a fragmentation of the initial Michael adduct 179 (Scheme 39). [Pg.186]


See other pages where 4- Vinyl 3-pyrrolin-2-ones is mentioned: [Pg.110]    [Pg.218]    [Pg.172]    [Pg.324]    [Pg.320]    [Pg.157]    [Pg.340]    [Pg.340]    [Pg.171]    [Pg.1821]    [Pg.14]    [Pg.366]    [Pg.17]    [Pg.115]    [Pg.180]    [Pg.185]    [Pg.195]    [Pg.195]    [Pg.17]   
See also in sourсe #XX -- [ Pg.180 ]




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3- Pyrrolin-2-one

3-Vinyl-substituted 3-pyrrolin-2-ones

N-VINYL-2-PYRROLIN-2-ONE: 2-PYRROLIDINONE, 1-ETHENYL

Pyrroline

Pyrroline-3-ones

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