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Diels-Alder reaction propargylic compounds

The allenyl moiety (2,3-aikadienyl system) in the carbonylation products is a reactive system and further reactions such as intramolecular Diels-Alder and ene reactions are possible by introducing another double bond at suitable positions of the starting 2-alkynyl carbonates. For example, the propargylic carbonate 33 which has l,8(or 1.9)-diene-3-yne system undergoes tandem carbonylation and intramolecular Diels-Alder reaction to afford the polycyclic compound 34 under mild conditions (60 C, 1 atm). The use of dppp as ligand is important. One of the double bonds of the allenyl ester behaves as part of the dieneflSj. [Pg.458]

Intramolecular [4+2]-cycloaddition reactions, which involve base-induced isomerization of a propargyl ether to an allenyl ether, have been extensively studied. Treatment of 157 with a base caused an intramolecular Diels-Alder reaction of the intermediate allenyl ether to give tricyclic compounds 158 [131]. An asymmetric synthesis of benzofuran lactone 159 was achieved by an analogous procedure [132],... [Pg.778]

An enantioselective synthesis of the Ziegler intermediate 107 of forskolin (108) has been achieved using an intramolecular allenic Diels-Alder reaction (Scheme 19.20) [24], Treatment of propargyl ether 104 with potassium tert-butoxide in tert-butanol affords 106, presumably through the intermediate allene 105. Compound 106 was obtained as a single stereoisomer. [Pg.1055]

Base-induced isomerization of propargyl amide 29a gives chiral ynamide 30a, which is subjected to ring-closure metathesis to afford cyclic enamide 31a. Diels-Alder reaction of 31a with dimethyl acetylene dicarboxylate (DMAD) gives quinoline derivative 32. In a similar manner, propargyl amide 29b is converted into ynamide 30b, RCM of which gives bicyclic compounds 31b and 31b in a ratio of 1 to 1 (Scheme 10). [Pg.279]

In 1988 Gibbs and Okamura [128] described the intramolecular Diels-Alder reaction of the non-racemic vinylallene 150 to afford the adduct 151 (as a mixture of epimers at sulfur) in a completely exo-selective manner, due to the topographical and steric arrangement of the starting vinylallene (Scheme 74). Compound 150 was obtained as a mixture of epimers at sulfur from the optically pure propargylic alcohol 149 (this transformation involved a sulfoxide-sulfenate rearrangement). Compound 151 was used to synthesize (-l-)-sterpurene. [Pg.78]

Enines derived from allylic substitution products by propargylation offer many possibilities in organic synthesis. We have pursued Au-catalyzed cycloadditions with carbonyl compounds [31], enyne metathesis reactions in combination with Diels-Alder reactions [32], and a Pauson-Khand reaction as part of a synthesis of kainic acid [33]. The latter synthesis is described in Scheme 11.16 as a ret-rosynthetic scheme. The Ir-catalyzed allylic amination under in situ conditions proceeded with excellent enantioselectivity. Overall, our synthesis required 12 steps and gave a total yield of 12%. [Pg.250]

Cycloaddition reactions of a,/3-unsaturated chromium and tungsten complexes have been studied to a great extent and have been reviewed.3 -6 Our report on cycloaddition of (l-alkynyl)carbene complexes is restricted to a short abstract and an update including more recent results. A most remarkable feature of [4+2] cycloadditions of 1,3 dienes to C=C bonds of (l-alkynyl)carbene complexes, e.g., li, is that such reactions proceed under very mild conditions, compared to those for reactions of propargylic esters, e.g., 41. Thus, formation of a Diels-Alder adduct, e.g., a norbornadiene derivative 42, can be achieved at 25°C via carbene complexes instead of at 190°C via the direct route (Scheme 15).68 Ligand disengagement from compound 40 can be achieved in various ways, e.g., by formation of an ester 43 through oxidation of the Cr=C bond, or by formation of an allyl silane 4369 or a stannane.70 71... [Pg.182]


See other pages where Diels-Alder reaction propargylic compounds is mentioned: [Pg.385]    [Pg.1048]    [Pg.1054]    [Pg.85]    [Pg.218]    [Pg.247]    [Pg.168]    [Pg.13]    [Pg.470]    [Pg.326]    [Pg.309]    [Pg.12]    [Pg.148]    [Pg.165]    [Pg.279]    [Pg.217]    [Pg.373]    [Pg.35]    [Pg.216]    [Pg.271]   
See also in sourсe #XX -- [ Pg.222 ]




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Diels-Alder reactions compounds

Propargyl compounds

Propargylation reactions

Propargylic compounds

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