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Stille/Diels—Alder sequence

One pot cascade sequences involving a Stille coupling (Heck/Stille, Heck/ carbonylative Stille, Stille/Diels Alder, Stille/electrocyclization, etc.) have been reported in literature. ... [Pg.156]

Numerous synthetic applications of the inteimolecular Pauson-Khand reaction have been reported. Pauson has reported a number of very direct tqrplications of cycloadditions of ethylene in the synthesis of prostanoids and jasmone analogs (e.g. equations 15 and 16). - This is a reliable entry to 2-sub-stituted cyclopentenones. The suitability of cyclopentene and dihydrofuran as substrates has permitted the extension of this work to the preparation of still further varieties of prostaglandin analogs (e.g. equations 27 and 51). Simple 4,5-disubstituted 2-cyclopentenones are not as directly accessible, but may be prepared from the cycloaddition products of norbomadiene (equation 45). A sequence of conjugate addition followed by retro-Diels-Alder reaction affords the product (Scheme 5). Dihydrofuran cycloadditions have been used by Billington in the syntheses of the antibiotic methylenomycin B (Scheme 6), as well as cyclomethylenomycin A (synthetic precursor to the antibiotic methylenomycin A), cyclosarko-mycin (precursor to the antitumor agent sarkomycin) ° and the iridoid Jq>anese hop ether. ... [Pg.1051]

Over the last 10 years, a burst of publications and reviews has been focused on the translation of different types of organic reactions towards the solid phase. The difficulty of transferring certain key reactions to the solid phase has stimulated solution phase library synthesis approaches which may be more effective. Cycloaddition reactions allow straightforward and often stereoselective construction of cyclic systems, which can serve as templates for further derivatization. Therefore, cycloaddition reactions play a key role in combinational chemistry sequences. The translation of cycloaddition reactions, especially 1,3-dipolar- [2] and Diels-Alder reactions [3] to the solid phase has been extensively studied. Although the benefits of high pressure for all type of cycloaddition reactions (e.g. [4 + 2] 1,3-dipolar, [2 + 2]) have been very well illustrated in past decades, the application of high pressure to solid phase cycloaddition reactions is still in its infancy. [Pg.284]

Volhardt s tZZ-estrone synthesis was the first application of a transition-metal-catalyzed [2 -1- 2 -I- 2] alkyne cyclotrimerization in natural product synthesis, and the overall beauty of the synthetic sequence is still appealing [4,5]. Undoubtedly, this brilliant synthesis is a classic in its field. Following a D ABCD ring formation approach, the tetracyclic core of estrone was produced in a single reaction step by profiting from a reaction cascade that started with a cobalt-mediated crossed [2 + 2 + 2] alkyne cycloaddifion, which was followed by a benzocyclobutane to o-quinodimethane rearrangement, and was finalized by an intramolecular Diels-Alder reaction (Scheme 7.2). [Pg.209]


See other pages where Stille/Diels—Alder sequence is mentioned: [Pg.231]    [Pg.235]    [Pg.231]    [Pg.235]    [Pg.500]    [Pg.17]    [Pg.37]    [Pg.1051]    [Pg.357]    [Pg.132]    [Pg.85]    [Pg.142]    [Pg.101]    [Pg.499]    [Pg.4295]    [Pg.79]    [Pg.376]    [Pg.294]   
See also in sourсe #XX -- [ Pg.235 ]




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Stille sequence

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