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0-Keto esters synthesis

Scheme 27 Roskamp s tin-catalyzed p-keto ester synthesis, in which Nomura s methoxycarbonyl diazoester 63 afforded slightly improved outcomes... Scheme 27 Roskamp s tin-catalyzed p-keto ester synthesis, in which Nomura s methoxycarbonyl diazoester 63 afforded slightly improved outcomes...
Scheme 28 A closed transition state, with R group equatorial, has been advanced as a basis for preferential a C-H migration in the Roskamp p-keto ester synthesis... Scheme 28 A closed transition state, with R group equatorial, has been advanced as a basis for preferential a C-H migration in the Roskamp p-keto ester synthesis...
General Synthesis and Reactions of Esters Synthesis of Diesters Synthesis of Hydroxy-esters Synthesis of Keto-esters Synthesis of Unsaturated Esters Synthesis of Aromatic Esters Synthesis of Thioesters Synthesis of Vinylogous Esters... [Pg.482]

Various organotin reagents react with acyl and aroyl halides under mild conditions without decarbonylation to give carbonyl compounds[390,39l]. Alkyl- or alkenyltin reagents react with acyl and aroyl chlorides to give ketones[548.733,734]. One example is the preparation of the a,/3-dnsaturated 7-keto esters 860 and 861, carried out under a CO atmosphere[735]. The reaction has been applied intramolecularly to the synthesis of the macrocyclic keto... [Pg.255]

Application of 7r-allylpalladium chemistry to organic synthesis has made remarkable progress[l]. As deseribed in Chapter 3, Seetion 3, Tt-allylpalladium complexes react with soft carbon nucleophiles such as maionates, /3-keto esters, and enamines in DMSO to form earbon-carbon bonds[2, 3], The characteristie feature of this reaction is that whereas organometallic reagents are eonsidered to be nucleophilic and react with electrophiles, typieally earbonyl eompounds, Tt-allylpalladium complexes are electrophilie and reaet with nucleophiles such as active methylene compounds, and Pd(0) is formed after the reaction. [Pg.290]

The 1.3-allylic diacetate 135 can be used for the formation of the methy-lenecyclopentane 137 with the dianionic compound 136(86]. The cyclohexa-none-2-carboxylate 138 itself undergoes a similar annulation with the 1,3-allylic diacetate 135 to form the methylenecyclohexane derivative 139(90]. The reaction was applied as a key step in the synthesis of huperzin A[91]. On the other hand. C- and 0-allylations of simple J-dikctones or. 1-keto esters take place, yielding a dihydropyran 140(92]. [Pg.309]

The method was applied to the synthesis of (-t-)-l9-nortestosterone by the following sequence of reactions. Michael addition of the bisannulation reagent 124 to the optically active keto ester 129 and decarboxylation afforded 130, and subsequent aldol condensation gave 131. Selective Pd-catalyzed oxidation of the terminal double bond afforded the diketone 132 in 78% yield. Reduction of the double bond and aldol condensation gave ( + )-19-nortestosterone (133)[114]. [Pg.442]

The most widely used method for the preparation of carboxylic acids is ester hydrolysis. The esters are generally prepared by heterocyclization (cf. Chapter II), the most useful and versatile of which is the Hantzsch s synthesis, that is the condensation of an halogenated a- or /3 keto ester with a thioamide (1-20). For example ethyl 4-thiazole carboxylate (3) was prepared by Jones et al. from ethyl a-bromoacetoacetate (1) and thioformamide (2) (1). Hydrolysis of the ester with potassium hydroxide gave the corresponding acid (4) after acidification (Scheme 1). [Pg.520]

The thermal decarboxylation of p keto acids is the last step in a ketone synthesis known as the acetoacetic ester synthesis The acetoacetic ester synthesis is discussed in Section 21 6... [Pg.819]

Before describing how p keto esters are used as reagents for organic synthesis we need to see how these compounds themselves are prepared The mam method for the prepa ration of p keto esters is the Claisen condensation... [Pg.887]


See other pages where 0-Keto esters synthesis is mentioned: [Pg.153]    [Pg.230]    [Pg.425]    [Pg.425]    [Pg.119]    [Pg.299]    [Pg.280]    [Pg.425]    [Pg.299]    [Pg.119]    [Pg.150]    [Pg.254]    [Pg.385]    [Pg.393]    [Pg.466]    [Pg.893]   
See also in sourсe #XX -- [ Pg.63 , Pg.200 ]




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3-Keto esters

A-Keto esters synthesis

Beta-keto ester synthesis

Esters, 1,6-keto synthesis, Reformatsky reaction

Hydrogenation keto esters, total synthesis

Intramolecular Keto Ester Cyclizations Synthesis of Cyclanones

Keto esters chiral compound stereoselective synthesis

Keto esters, total synthesis, asymmetric

Keto esters, total synthesis, asymmetric hydrogenation

Ortho esters, 3-keto synthesis

Oxalic acid synthesis of a-keto esters

P-Keto esters synthesis

Route C. Synthesis and Enantioselective Hydrogenation of Keto Ester

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