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Nitronates intramolecular

For diastereoselective nitrone intramolecular cycloaddition to conjugated esters, see R. Annunziata, M. Cinquini, F. Cozzi and L. Raimondi, Tetrahedron Lett., 1988, 29, 2881. [Pg.1166]

Silyl nitronates. Intramolecular cycloaddition of j3-propargyloxy nitroalkanes is induced by MeySiCl-EtyN. It is a convenient way to dihydrofuraldehydes. Dihy-dropyranaldehydes are obtainable from the homologous nitro ethers. [Pg.381]

The reaction of nitrones with allenes produced three main products an azepine, a pyrrolidinone and an isoxazolidine (Scheme 155) (79JOC4213). The intramolecular cycloaddition of nitrones (529) produced different products depending on the length of n (Scheme 156) (78H(10)257). [Pg.109]

The Michael addidon of nitroalkanes to nitroalkenes is catalyzed by triethylamine to give 1,3-dirutro compounds fEq. 4.45. In some cases, the intramolecular displacement of thenitro group takes place to give cyclic nitronates fEq. 4.46. ... [Pg.85]

Redncdons of y-nitroketones yield cyclic nitrones, which undergo inter- and intramolecular cycloadthdon to various alkenes. The result of adthdon to acrylonitrile is shown in Eq. 8.43, in which a rruxnire of regio- and stereoisomers is formed. - ... [Pg.249]

Several elegant synthetic strategies have been devised for biotin (1) this chapter describes one of the total syntheses developed at Hoffmann-La Roche. This insightful synthesis employs a derivative of L-cysteine, a readily available member of the chiral pool,2 as the starting material, and showcases the powerful intramolecular nitrone-olefin [3+2] cycloaddition reaction. [Pg.285]

The elegant, enantiospecific synthesis of biotin (1) by Hoffmann-La Roche1 is based on a strategy that takes advantage of the powerful intramolecular nitrone-olefin cycloaddition reaction. Our analysis begins with model studies in which the straightforward conversion of L-cysteine (2) into aldehyde 3 (see Scheme 1) constitutes... [Pg.286]

The total synthesis of biotin (1) described in this chapter provides an impressive example of the intramolecular nitrone-olefin [3+2] cycloaddition reaction. Aiming for a practical process, the Hoff-mann-La Roche group utilized relatively simple and inexpensive starting materials, and ingeniously controlled the crucial [3+2] cycloaddition reaction to give only one stereoisomer by confining the cycloaddition precursor to a ten-membered ring. [Pg.291]

Treatment of 2- 5//-dibenz[i>,/]azepin-5-yl acetaldehyde (16), prepared in 68% yield by /V-alkylation of 5/7-dibenz[A,/]azepine with bromoacetaldehyde diethyl acetal followed by acid hydrolysis, with methyl hydroxylamine yields the isolable nitrone 17, which in refluxing toluene undergoes intramolecular 1,3-dipolar cycloaddition at the CIO —Cl 1 alkene bond to give 2,3,3a, 12b-tetrahydro-2-methyl-3,8-methano-8//-dibenz[i>,/]isoxazolo[4,5-r/]azepine (18).235... [Pg.291]

The reactions of the lithium enolates of substituted 2-cyclohexenones and 2-cyclopentenones with ( )-l-nitropropene give a mixture of syn- and ami-products3. The lithium enolate of 3,5,5-trimethyl-2-cyclohexenone gives a mixture of the syn- and //-3.5,5-trimethyl-6-(l-methyl-2-nitroethyl)-2-cyclohexcnoncs in modest diastereoselection when the reaction mixture is quenched with acetic acid after. 30 minutes at —78 =C. When the reaction mixture is heated to reflux, tricyclic products are obtained resulting from intramolecular Michael addition of the intermediate nitronate ion to the enone moiety. [Pg.1012]

An in depth account of intramolecular 1,3-dipoIar cycloadditions involving dipoles such as nitrUe oxides, sUyl nitronates, H-nitrones, azides, and nitrUimines is presented with particular emphasis on the stereochemistry during the cycloaddition. Various methods employed for the generation of the dipoles and their applications to stereoselective synthesis are also discussed. [Pg.1]

Keywords Intramolecular 1,3-dipolar cycloadditions. Stereoselectivity, Nitrile oxides, SUyl nitronates. Oximes, H-Nitrones, Azides, NitrUimines... [Pg.1]

Intramolecular Silyl Nitronate-Olefin Cycloaddition (ISOC)... [Pg.1]


See other pages where Nitronates intramolecular is mentioned: [Pg.103]    [Pg.188]    [Pg.95]    [Pg.380]    [Pg.103]    [Pg.188]    [Pg.95]    [Pg.380]    [Pg.127]    [Pg.174]    [Pg.138]    [Pg.111]    [Pg.121]    [Pg.250]    [Pg.17]    [Pg.286]    [Pg.287]    [Pg.287]    [Pg.288]    [Pg.290]    [Pg.290]    [Pg.154]    [Pg.1150]    [Pg.210]    [Pg.255]   
See also in sourсe #XX -- [ Pg.148 , Pg.149 , Pg.150 , Pg.151 , Pg.152 ]

See also in sourсe #XX -- [ Pg.148 , Pg.149 , Pg.150 , Pg.151 , Pg.152 ]




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1.3- Dipolar cycloaddition intramolecular silyl nitronate

Alkenes intramolecular nitrone-alkene cycloadditions

Alkyl nitronates intramolecular

Intramolecular cycloadditions acyclic nitronate preparation

Intramolecular cycloadditions alkyl nitronates

Intramolecular cycloadditions nitronate stereoselectivity

Intramolecular cycloadditions nitrones/nitronates

Intramolecular cycloadditions silyl nitronates

Intramolecular nitrone cyclo-addition

Intramolecular reaction nitrone cycloaddition

Nitronate structures intramolecular cycloadditions

Nitronates intramolecular cycloadditions

Nitrone cycloaddition intramolecular

Nitrone-olefin intramolecular

Nitrones intramolecular cycloaddition

Nitrones intramolecular cycloadditions

Nitrones nitrile oxide intramolecular cycloadditions

Nitrones, N- intramolecular cycloaddition

Olefins silyl nitronates, intramolecular cycloadditions

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