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Phosphonic acid, 2- vinyl-, diethyl

Diazoalkanes add readily to the double bond of esters of vinylphosphonic acid, giving the pyrazoline derivatives (100), which can lose nitrogen to give esters of cyclopropylphosphonic acids. In a similar reaction, acyl-phosphonic acid esters (101) were converted to epoxy-derivatives (102). A -Phenylsydnone adds to diethyl prop-l-ynephosphonate, giving the pyra-zole (103). The addition of cyclopentadiene to dimethyl vinyl phosphate leads to an exojendo quotient of 1.2, but with hexachlorocyclopentadiene only e/ii/o-isomer is formed. ... [Pg.117]

Phosphinimines, 50, 109 Uf-Phosphinolin-4-one, 2,3-dihydro, 1-phenyl, 53, 102 Phosphonic acid, 2-(cyclo-hexylamino)vinyl-, diethyl ester, 53, 44... [Pg.134]

PSVBDEP poly(styrene-co-4-vinyl benzene phosphonic acid diethyl ester) PVAc poly(vinyl acetate)... [Pg.124]

DIETHYL 2-(CYCLOHEXYLAMINO)VINYLPHOSPHONATE (Phosphonic acid, [2-(cyclohexylamino)vinyl]-diethyl ester)... [Pg.44]

Synthesis of isomeric chiral protected (63 )-6-amino-hexahydro-2,7-dioxopyrazolo[l,2- ]pyrazole-l-carboxylic acid 280 is shown in Scheme 36. Crude vinyl phosphonate 275, obtained by treatment of diethyl allyloxycarbonylmethyl-phosphonate with acetic anhydride and tetramethyl diaminomethane as a formaldehyde equivalent, was used in the Michael addition to chiral 4-(f-butoxycarbonylamino)pyrazolidin-3-one 272. The Michael addition is run in dichloro-methane followed by addition of f-butyl oxalyl chloride and 2 equiv of Huning s base in the same pot to provide 276 in 58% yield. The allyl ester is deprotected using palladium catalysis to give the corresponding acid 277, which is... [Pg.407]

A general methodology for the construction of quaternary carbon atoms at the carbonyl carbon of ketones has been successfully exploited for the facile synthesis of ( )-lycoramine (299) (Scheme 30) (165). Thus, the O-allylated o-vanillin 322 was allowed to react with vinyl magnesium bromide followed by Jones oxidation, and the acid-catalyzed addition of benzyl IV-methylcarbamate to the intermediate a,(3-unsaturated ketone furnished 323. Wadsworth-Emmons olefination of 323 with the anion derived from diethyl[(benzylideneami-no)methyl]phosphonate (BAMP) provided the 2-azadiene 324. The subsequent regioselective addition of n-butyllithium to 324 delivered a metalloenamine that suffered alkylation with 2-(2-bromoethyl)-2-methyl-l,3-dioxolane to give, after acid-catalyzed hydrolysis of the imine and ketal moieties, the 8-keto aldehyde 325. Base-catalyzed cycloaldolization and dehydration of 325 then provided the 4,4-disubstituted cyclohexenone 326. The entire sequence of reactions involved in the conversion of 323 to 326 proceeded in very good overall yield and in one pot. [Pg.314]

Phosphonates. The principal synthetic routes include addition and condensation methods. Although a large number of vinyl and diene phosphonate monomers have been described in the literature (2,5,7,62), only bis(2-chloroethyl) vinylphosphonate (Akzo-Nobel s Fyrol Bis-Beta monomer), vinylphosphonic acid (Clariant), and dimethyl vinylphosphonate (Clariant) have been offered commercially. The diethyl vinylphosphonate is available in laboratory quantities. [Pg.5567]


See other pages where Phosphonic acid, 2- vinyl-, diethyl is mentioned: [Pg.49]    [Pg.262]    [Pg.113]    [Pg.278]    [Pg.141]    [Pg.439]    [Pg.16]    [Pg.163]    [Pg.426]    [Pg.254]    [Pg.252]    [Pg.321]    [Pg.583]    [Pg.588]    [Pg.366]    [Pg.481]   


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Phosphonates vinyl

Phosphonic acid

Phosphonic acid, -, diethyl

Phosphonic acid/phosphonate

Phosphonic acids acidity

Phosphonous acid

Vinyl phosphonate

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