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  • Organic Chemistry  (5)
  • 1
    ISSN: 0018-019X
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Preparative Chromatographic Resolution of Synthetically Useful Cyclic AcetalsRacemic cyclic acetals derived from aldehydes and glycine, glycolic acid, thioglycolic acid, formylacetic acid, and acetoacetic acid (oxazolidinones 4-13, dioxolanones 14, 15, oxathiolanone 16, dioxinones 17-23) are resolved by preparative high-pressure liquid chromatography on silica gel coated with the polymer from N-acryloylphenylalanine ethyl ester (Chiraspher®). The separation factors α range from1,1 to 2,4. Use of a Prepbar®-chromatography system allows injection of several grams at a time. The enantiomeric acetals thus obtained are fully characterized. First application to amino-acid synthesis are mentioned.
    Additional Material: 2 Ill.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    Helvetica Chimica Acta 70 (1987), S. 1104-1114 
    ISSN: 0018-019X
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The preparation of novel electrophilic building blocks for the synthesis of enantiomerically pure compounds (EPC) is described. Thus, the 2-(tert-butyl)dioxolanones, -oxazolidinones, -imidazolidinones, and -dioxanones obtained by acetalization of pivalaldehyde with 2-hydroxy-, 3-hydroxy-, or 2-amino-carboxylic acids are treated with N-bromosuccinimide under typical radical-chain reaction conditions (azoisobuytyronitril/CCl4/reflux). Products of bromination in the α-position of the carbonyl group of the five-membered-ring acetals are isolated or identified (2, 5, and 8; Scheme 1). The dioxanones are converted to 2H, 4H-dioxinones under these conditions (12, 14, 15, 21, and 22; Schemes 2 and 3). The products can be converted to chiral derivatives of pyruvic acid (methylidene derivatives 3 and 6) or of 3-oxo-butanoic and -pentanoic acid (16 and 23). The mechanism of the brominations is interpreted. The conversion of serine to enactiomcrically pure dioxanones 26-28 (Scheme 4) is also discussed.
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 0018-019X
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: (R)-3-Hydroxybutyric acid (from the biopolymer PHB) and pivalaldehyde give the crystalline cis - or (R,R)-2-(tert-butyl)-6-methyl-1,3-dioxan-4-one (1a), the enolate of which is stable at low temperature in THF solution and can be alkylated diastereoselectively (→3, 4, 5, and 7). Phenylselenation and subsequent elimination give an enantiomerically pure enol acetal 10 of aceto-acetic acid. Some reactions of 10 have been carried out, such as Michael addition (→11), alkylation on the CH3 substituent (→13), hydrogenation of the C=C bond (→1a) and photochemical cycloaddition (→16). The overall reactions are substitutions on the one stereogenic center of the starting β-hydroxy acid without racemization and without using a chiral auxiliary.
    Type of Medium: Electronic Resource
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  • 4
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    Helvetica Chimica Acta 71 (1988), S. 1143-1155 
    ISSN: 0018-019X
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Highly Diastereoselective α-Alkylation of β-Hydroxycarboxylic Acids Through Lithium Enolates of 1,3-Dioxan-4-onesFrom serine, β-hydroxyisobutyric acid (‘Roche’ acid) and β-hydroxybutyric acid, the dioxanones 1-6 were prepared. The generation of the enolates of type I with LDA at -75° and alkylation gave products with trans-configuration whereas protonation of the 5-methyl-substituted enolate allowed access to the cis-configurated β-hydroxybutyric-acid derivative 12. Hydrolysis gave the free β-hydroxy acids of ‘syn’-and ‘anti’-configuration. Alkylation of the 6-unsubstituted dioxanones 1 and 3 yielded predominantly products resulting from attack in the cis-position of the t-Bu group. The ‘reactive’ conformation of the enolates involved is tentatively derived from the product configuration. The selectivity of the alkylation is also discussed in terms of the results of an ab-initio calculation on the enolates M-P.
    Additional Material: 2 Ill.
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  • 5
    ISSN: 0170-2041
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: (+)-11,11′-Di-O-methylelaiophyliden - Herstellung aus Elaiophylin und Totalsynthese aus (R)-3-Hydroxybuttersäure- und (S)-ÄpfelsäureesterDas Makrodiolid-Antibiotikum Elaiophylin (6, Schema 1) kann durch säurekatalysierte Abspaltung der Desoxyfucose-Einheiten in Methanol unter gleichzeitiger Substitution der C-11- und C-11′-Lactol-OH-Gruppen durch OCH3 in das Aglycon 8a umgewandelt werden. Dieses Di-O-methylelaiophyliden genannte C2-symmetrische Makrodiolid 8a enthält 2 × 11 stereogene Einheiten, von denen in der hier beschriebenen Totalsynthese zwei aus (R)-3-Hydroxybuttersäure (aus dem Biopolymer PHB) und (S)-Äpfelsäure stammen, während die anderen durch diastereoselektive Reaktionsschritte erzeugt werden. Die zwei Schlüsselprodukte der konvergenten Synthese (Schema 2) sind der makrocyclische Dialdehyd 10 (vgl. 26, 27; 2 × 5 stereogene Einheiten) und das silylgeschützte Dihydroxyketonderivat 11 (vgl. 34, 35; 3 stereogene Einheiten). Aldoladdition des Z-Bor-Enolates des Ketons an den Dialdehyd erfolgte - beinahe statistisch - mit relativer Topizität ul und lieferte zwei C2-symmetrische und ein unsymmetrisches Diaddukt (40a, b, c), von denen eines bei der säurekatalysierten Methanolyse das Aglycon 8a lieferte (Abb. 1 und 2 zeigen die NMR-Spektren). Die diastereoselektiven Schlüsselschritte, mit denen drei der sechs neuen asymmetrischen Kohlenstoffatome erzeugt wurden, sind α-Alkylierungen von β-Hydroxyester oder-lacton-Alkoholat-Enolaten (Äpfelsäure → 12 und 15 → 16 bei der Dialdehydsynthese sowie Hydroxybuttersäure → 29 bei der Herstellung des Ketons).
    Notes: The macrodiolide antibiotic elaiophylin (6, Scheme 1) is converted into an aglycone 8a by acid-catalysed cleavage of the deoxyfucoses in methanol, with replacement of two lactol OH-groups by OCH3 (C-11 and C-11′). The di-O-methylelaiophylidene (8a), a C2-symmetrical macrodiolide with 2 × 11 stereogenic units, was synthesised from (R)-3-hydroxy-butanoate (from the biopolymer PHB) and (S)-malic ester, using diastereoselective steps for the generation of the other stereogenic units. The key intermediates (Scheme 2) are the macrocyclic dialdehyde 10 (cf. 26, 27; 2 × 5 stereogenic units) and the silyl-protected dihydroxy ketone derivative 11 (cf. 34, 35; 3 stereogenic units). These two intermediates almost statistically were subjected to aldol coupling with relative topicity ul, using the Z-boron enolate of the ketone, to give the two C2-symmetrical and the asymmetric aldol (40a, b, c), one of which furnished the aglycone 8a upon acid-catalysed methanolysis (Fig. 1 and 2, NMR spectra). The diastereoselective key steps, by which three of the six new asymmetric carbon atoms are created, are α-alkylations of β-hydroxy ester or lactone alkoxide-enolates (malic acid → 12 and 15 → 16 in the dialdehyde synthesis, hydroxybutanoic acid → 29 in the ketone preparation).
    Additional Material: 2 Ill.
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