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Fumarate, methyl

A ver promising reactivity of A-2-thiazoline-4-one has been found recently. 5-Aryl-A-2-thiazoline-4-one (190) gives the 1.3-dipolar cycloaddition product (191) with methyl fumarate and methyl maleate... [Pg.425]

Another example of an enzymatic one-pot multiple Diels-Alder reaction is illustrated in Table 4.20 [83]. Racemic furfuryl alcohols 130 in the presence of ethoxy vinyl methyl fumarate 131 and enzyme TOYOBO-LIP undergo enzymatic acylation followed by kinetic enzymatic resolution to give the acyl derivatives 132 which then affords the adducts 133 and 134 by intramolecular Diels-Alder reaction 3-methyl-furfuryl alcohol 130 (R = Me) in acetone gives the best results. [Pg.182]

Methyl ether cleavage, 59, 39 Methyl cw-M(l-ethoxy-2,3-dimethyl-cyclopropyl)carbamate, 59,138 Methyl rrans-A -(l-ethoxy-2,3-dimethyl-cyclopropyl)carbamate, 59, 138 Methyl ethyl ketone, 55, 25 5 -Methyl ferrocenethiocarbonate, 56, 30 Methyl formate, 59, 183 Methyl fumarate, 56, 63... [Pg.119]

An extensive paper by Burgada et l. reports the reactions of cyclic phosphites (75 ab) and cyclic phosphoramidites (76 ab) with trans-1,2-dibenzoylethene, methyl fumarate, benzalacetone (PhCH=CH COMe), methyl-4-keto-pent-2-enoate (MeCO.CH=CH.COgMe) and benzalacetophenone (PhCH=CHCOPh)95. These reactions lead to... [Pg.69]

A sequential cycloaddition, tandem cycloreversion-cycloaddition process is more efficient than the direct cycloaddition, especially in case of aliphatic aldehydes, where the corresponding ylides are rather unstable. The cycloreversion strategy lowers the concentration of the free ylide in the reaction mixture and avoids side reactions such as self-condensation of this reactive species. In some cases, this tandem cycloreversion-cycloaddition sequence provides improved chemical yields without any loss of diastereoselectivity. For example, compound 476 treated with methyl fumarate, methyl maleate, and methyl acrylate provides acceptable yields of compounds 477-479 (Scheme 80) <2000S1170, 2002S1885>. [Pg.434]

The addition of (TMS)3SiH to prochiral diethyl methyl fumarate (5) gave both diastereoisomers with preferential formation of the threo isomer (Reaction 5.7) [25]. This suggests that the intermediate adduct 6 adopts a preferred conformation due to the allylic strain effect, in which the silyl moiety shields one face of the prochiral radical center, favouring hydrogen transfer to the opposite face, and therefore the threo product is predominantly formed. [Pg.93]

Anodic oxidation of 1,2-dicarboxylic acids as their alkali metal salts in concentrated aqueous solution gives the alkene with the loss of two molecules of carbon dioxide [125]. Succinic acid affords etltene and methylsuccinic acid ptopene [50]. Allene is obtained from itaconic acid and the isomeric methylmaleic and methyl-fumaric acids give propyne... [Pg.325]

In References 32 and 33 we find the liquid phase enthalpies of formation of the methyl and allyl esters of the OO-fert-butyl peroxyfumaric and peroxysuccinic acids. The difference between the enthalpies of formation of each fumarate and succinate pair of peresters is the enthalpy of hydrogenation. The enthalpy of hydrogenation to the succinate of the methyl fumarate is —131.4 3.6 kJmol", and of the allyl fumarate is... [Pg.161]

The formation of spirocyclopropanes from the reaction of diazodiphenylmethane and ( )-8-phenylmenthyl esters of acrylic acid and methyl fumarate occurred with a modest level of diastereofacial selectivity (136). In contrast, diastereoselectivities of 90 10 were achieved in the cycloadditions of diazo(trimethylsilyl)methane with acrylamides 65 derived from camphor sultam as the chiral auxiliary (137) (Scheme 8.16). Interestingly, the initial cycloadducts 66 afforded the nonconjugated A -pyrazolines 67 on protodesilylation the latter were converted into optically active azaproline derivatives 68. In a related manner, acrylamide 69 was converted into A -pyrazolines 70a,b (138). The major diastereoisomer 70a was used to synthesize indolizidine 71. The key step in this synthesis involves the hydrogenolytic cleavage of the pyrazoline ring. [Pg.554]

Some l-(2-furyl)-l-alkanols have also been resolved by hydrolase-catalyzed acylations (Scheme 4.20). Thus l-(2-furyl)-l-ethanol (46) is efficiently resolved by acylation with vinyl acetate catalyzed either by Lipozyme IM or PPL [77]. Resolution with a more complex acyl donor, ethoxyvinyl methyl fumarate, catalyzed by Lipase LIP (from Pseudomonas aeruginosa) has also been achieved [95]. The... [Pg.89]

Hydrolase-catalyzed domino reactions incorporating a resolution and a subsequent cycloaddition reaction have been described [95-97]. This constitutes an attractive approach to complex synthetic intermediates. For example, the l-(3-methyl-2-furyl)]propanol roc-93 reacts with ethoxyvinyl methyl fumarate (94) catalyzed by Lipase LIP (from Pseudomonas aeruginosa) to furnish a dienophilic fumarate ester, which spontaneously undergoes an intramolecular Diels-Alder reaction with the furan moiety furnishing exclusively the syn-adduct, the oxabicy-clohexene 95 in excellent along with the remaining alcohol S-96 (Scheme 4.31) [95]. A similar approach has been used for a procedure that includes a series of domino reactions that includes dynamic kinetic resolution of the 3-vinylcyclohex-... [Pg.97]

The enzyme aconitase catalyzes the isomerization of citric acid to isocitric acid via the intermediate cis-aconitic acid (Scheme 46),530 and various attempts have been made to model this reaction.21 The cobalt Ill) complexes derived from methyl maleate (171) and methyl fumarate (172) have been prepared531 to study intramolecular attack by coordinated hydroxide on the alkene. Generation of the hydroxo species of the maleic acid complex leads to rapid cyclization to give the... [Pg.475]

Photochemical (4 + 2) cycloaddition of anthracene and dimethyl fumarate or maleate have been reported by Kaupp [301], The reaction requires a high concentration of dimethyl fumarate or maleate owing to the short lifetime of the excited singlet state of anthracene and its facile dimerization. However, irradiation of a benzene solution of (9-anthryl)methyl methyl fumarate or maleate resulted in the intramolecular (4 + 2) photocycloaddition efficiently [302], Asymmetric induction in this intramolecular photocycloaddition of 291b-c was also investigated (Scheme 83). [Pg.184]

THF, ethyl acetate, and methanol. In contrast, use of other chlorinated solvents, e.g. CCI4, and cyclohexane resulted in higher enantioselectivity, comparable with that for chloroform. The range of dienophile substrates was also studied. Replacing N-methylmaleimide by N-phenylmaleimide, in the presence of quinidine as a catalyst, also led to a good yield, although enantioselectivity was lower (20% ee compared with 61% ee). Much slower reaction rates were observed when methyl acrylate and methyl fumarate were used and enantioselectivity was low (0% ee for methyl acrylate and 30% ee for methyl fumarate). With methyl maleate as a dienophile no reaction was observed. Mechanistic studies were also conducted by Kagan et al. results were in accordance with a concerted [4+2]-cycloaddition process. [Pg.257]


See other pages where Fumarate, methyl is mentioned: [Pg.400]    [Pg.56]    [Pg.210]    [Pg.400]    [Pg.736]    [Pg.333]    [Pg.235]    [Pg.242]    [Pg.470]    [Pg.197]    [Pg.79]    [Pg.400]    [Pg.64]    [Pg.112]    [Pg.113]    [Pg.125]    [Pg.635]    [Pg.12]    [Pg.42]    [Pg.92]    [Pg.95]    [Pg.120]    [Pg.133]    [Pg.144]    [Pg.156]    [Pg.160]    [Pg.164]    [Pg.165]    [Pg.169]    [Pg.175]    [Pg.176]   
See also in sourсe #XX -- [ Pg.56 , Pg.63 ]

See also in sourсe #XX -- [ Pg.118 ]




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2-Furfuryl methyl fumarate, intramolecular

Fumaric acid, methyl ester

Methyl fumarate, preparation

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