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Tungsten-promoted intramolecular alkoxycarbonylation for synthesis of complex oxygenated molecules
Journal article   Peer reviewed

Tungsten-promoted intramolecular alkoxycarbonylation for synthesis of complex oxygenated molecules

Chi-Chung Chen, Jang-Shyang Fan, Su-Ju Shieh, Gene-Hsian Lee, Shie-Ming Peng, Sue-Lang Wang and Rai-Shung Liu
Journal of the American Chemical Society, Vol.118(39), pp.9279-9287
02/10/1996

Abstract

Intramolecular alkoxycarbonylation of tungsten-propargyl compounds proceeds with excellent diastereoselectivities to form η 3 -δ- and -ε-lactones but for γ-lactones. With OSi(t-Bu)Me 2 substituted for an α-hydroxy group η 3 -γ-lactones are stereoselectively formed with syn stereoselection. An optically active tungsten η 3 -γ-lactone is prepared from D-(+)-xylose to illustrate the stereochemical effect of OSi(t-Bu)Me 2 . All these η 3 -γ-, -δ-, and -ε-lactones are converted to allyl anions that react in situ with aldehydes and ketones to produce various β-(hydroxylalkyl)-α-methylene-γ-lactones with good diastereoselectivity. This reaction is also applied to the synthesis of chiral α-methylene butyrolactones. Organic carbonyls add to the π-allyl groups of η 3 -γ- and -δ-lactones opposite the tungsten fragment, whereas additions occur from the metal side for η 3 -ε-lactones. The stereochemical courses of these reactions are discussed in detail. These two tungsten-promoted reactions efficiently effect stereoselective transformation of chloroalkynols to complex α-methylene-γ-lactones, which are useful materials for syntheses of trisubstituted 1,3-, 1,4-, and 1-5-diols.

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