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Oxazolidines oxazolidinones

Oxazolidin-5-one, bis(trifluoromethyl)-reactions, 6, 213 Oxazolidinones polymers, 1, 281-282 reactions, 6, 213 Oxazolidinones, imino-rearrangement, 5, 775 Oxazolidinones, vinyl-polymers, 1, 281 Oxazolidin-2-ones circular dichroism, 6, 185 H NMR, 6, 181 IR spectroscopy, 6, 183 PE spectroscopy, 6, 183 reactions, 6, 213... [Pg.729]

Inclusion of the amide in oxazolidinone functionality can be used to overcome diene statial disposition issues, for example in the conversion of 19 into 20 yields of 20 were generally high (Table 2). Ring opening of the oxazolidine moiety with or without loss of the mandelic acid moiety then afforded the corresponding azepin-2-ones <06TL3625>. [Pg.439]

Most of the reactions involving nucleophilic attack at a carbon atom of the ring result in cleavage of the five-membered ring system (which is in most cases either an oxazolidine or an oxazolidinone). Basic hydrolysis of... [Pg.445]

Among chiral auxiliaries, l,3-oxazolidine-2-thiones (OZTs) have attracted much interest for their various applications in different synthetic transformations.2 Such simple structures, directly related to far better known chiral oxazolidinones,11,12,57 have been explored in asymmetric Diels-Alder reactions and asymmetric alkylations, but mainly in condensation of their /V-acyl derivatives with aldehydes. Chiral OZTs have shown interesting characteristics in anti-selective aldol reactions58 or combined asymmetric addition. [Pg.146]

Metal complexes of bis(oxazoline) ligands are excellent catalysts for the enantioselective Diels-Alder reaction of cyclopentadiene and 3-acryloyl-l,3-oxa-zolidin-2-one. This reaction was most commonly utilized for initial investigation of the catalytic system. The selectivity in this reaction can be twofold. Approach of the dienophile (in this case, 3-acryloyl-l,3-oxazolidin-2-one) can be from the endo or exo face and the orientation of the oxazolidinone ring can lead to formation of either enantiomer R or S) on each face. The ideal catalyst would offer control over both of these factors leading to reaction at exclusively one face (endo or exo) and yielding exclusively one enantiomer. Corey and co-workers first experimented with the use of bis(oxazoline)-metal complexes as catalysts in the Diels-Alder reaction between cyclopentadiene 68 and 3-acryloyl-l,3-oxazolidin-2-one 69 the results are summarized in Table 9.7 (Fig. 9.20). For this reaction, 10 mol% of various iron(III)-phe-box 6 complexes were utilized at a reaction temperature of —50 °C for 2-15 h. The yields of cycloadducts were 85%. The best selectivities were observed when iron(III) chloride was used as the metal source and the reaction was stirred at —50 °C for 15 h. Under these conditions the facial selectivity was determined to be 99 1 (endo/exo) with an endo ee of 84%. [Pg.546]

The first effective enantioselective 1,3-dipolar cycloaddition of diazoalkanes catalyzed by chiral Lewis acids was reported in the year 2000 (139). Under catalysis using zinc or magnesium complexes and the chiral ligand (/ ,/ )-DBFOX/Ph, the reaction of diazo(trimethylsilyl)methane with 3-alkenoyl-2-oxazolidin-2-one 75 (R2 = H) gave the desilylated A2-pyrazolines (4S,5R)-76 (R =Me 87% yield, 99% ee at —40°C) (Scheme 8.18). Simple replacement of the oxazolidinone with the 4,4-dimethyloxazolidinone ring resulted in the formation of (4/ ,5S)-77 (R1 = Me 75% yield, 97% ee at -78 °C). [Pg.535]

This method 1011 includes the isolation of the oxazolidinones 9 before reductive ring opening. A one-pot method without isolation of the oxazolidin-5-ones has also been developed11061 and mainly used to prepare a variety of 7V-Fmoc-7V-methyl co-carboxylic adds. [Pg.226]

The oxazolidin-5-one 16 (1 mmol) was dissolved in CHC13 (5 mL) in a round-bottomed flask followed by addition of TFA (5 mL) and Et3SiH (0.48 mL, 3.0 mmol) and the mixture was left to stir. Oxazolidinones... [Pg.228]

The formation of oxazolidines 54 or oxazolidinones 55 is currently utilized to assign the absolute stereochemistry of diastereomers of 1,2-amino alcohols, based on H NMR analysis of the H4 and H5 protons of these heterocycles. In the case of y-amino-p-hydroxy acids, the internally cyclized pyrrolidinone 56 is also suitable for determination of the relative configurations of the y-amino and p-hydroxy groups (Scheme 23). [Pg.586]

Similarly, photolysis of chromium complex (CO)5Cr=C(OMe)(c-Pr) in the presence of two equivalents of the optically active 3-ethenyl-6(S)-phenyl-2-oxazolidinone under 90 psi CO pressure produced in high regio- and diastereo-selectively the 3-oxazolidine-substitued (2i ,3S)-cyclobutanone, in optical purity of > 97% de (equation 75)148. [Pg.527]

Another method for producing a chiral 3-carbon fragment, this time directly as a protected 5-hydroxymethyl-3-oxazolidin-2-one, is illustrated in scheme 9 (77). In this case, the amide 20 is converted to the 4-trityl ether 24. This undergoes very facile Hofmann rearrangement to give the 5-trityloxymethyl-3-oxazolidin-2-one 26 via the intermediate isocyanate 25. The oxazolidinone 26 is a protected version of 3-amino-1,2-dihydroxypropane. [Pg.91]


See other pages where Oxazolidines oxazolidinones is mentioned: [Pg.1067]    [Pg.1067]    [Pg.33]    [Pg.328]    [Pg.329]    [Pg.487]    [Pg.853]    [Pg.77]    [Pg.216]    [Pg.217]    [Pg.307]    [Pg.20]    [Pg.187]    [Pg.157]    [Pg.453]    [Pg.126]    [Pg.180]    [Pg.229]    [Pg.230]    [Pg.378]    [Pg.29]    [Pg.225]    [Pg.243]    [Pg.19]    [Pg.136]    [Pg.200]    [Pg.259]   
See also in sourсe #XX -- [ Pg.342 , Pg.344 ]




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1,2-Oxazolidin

Oxazolidine

Oxazolidines

Oxazolidinone

Oxazolidinones

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