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3- oxazolidin-2-ones

Intramolecular reaction of the allenyl carbamate 5 in the presence of a large excess of allylic chloride catalyzed by Pdi(dba)3 or PdCl2(PhCN)2 affords the substituted oxazolidin-2-one 6. Since the reaction is catalyzed by both Pd(II) and Pd(0), its mechanism is not dear[3]. [Pg.450]

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]

Chiral 4,5-disubstituted oxazolidin-2-ones in stereoselective synthesis of (3-hydroxy-a-amino acids 97G475. [Pg.253]

The Asymmetric Diels-Alder Reaction of 3-Alkenoyl-l,3-oxazolidin-2-ones as Dienophile... [Pg.24]

Chiral 3-alkenoyl-l,3-oxazolidin-2-ones have been developed and used in highly diastereoselective Diels-Alder reactions by Evans et al. [26] (Scheme 1.34). In this reaction these dienophiles are highly reactive compared with the corresponding... [Pg.24]

Fig. 1.5 Coordination of E12AICI with chiral crotonoyl-1,3-oxazolidin-2-one derivative... Fig. 1.5 Coordination of E12AICI with chiral crotonoyl-1,3-oxazolidin-2-one derivative...
A chiral titanium complex with 3-cinnamoyl-l,3-oxazolidin-2-one was isolated by Jagensen et al. from a mixture of TiCl 2(0-i-Pr)2 with (2R,31 )-2,3-0-isopropyli-dene-l,l,4,4-tetraphenyl-l,2,3,4-butanetetrol, which is an isopropylidene acetal analog of Narasaka s TADDOL [48]. The structure of this complex was determined by X-ray structure analysis. It has the isopropylidene diol and the cinnamoyloxazolidi-none in the equatorial plane, with the two chloride ligands in apical (trans) position as depicted in the structure A, It seems from this structure that a pseudo-axial phenyl group of the chiral ligand seems to block one face of the coordinated cinnamoyloxazolidinone. On the other hand, after an NMR study of the complex in solution, Di Mare et al, and Seebach et al, reported that the above trans di-chloro complex A is a major component in the solution but went on to propose another minor complex B, with the two chlorides cis to each other, as the most reactive intermediate in this chiral titanium-catalyzed reaction [41b, 49], It has not yet been clearly confirmed whether or not the trans and/or the cis complex are real reactive intermediates (Scheme 1.60). [Pg.39]

Among the many chiral Lewis acid catalysts described so far, not many practical catalysts meet these criteria. For a,/ -unsaturated aldehydes, Corey s tryptophan-derived borane catalyst 4, and Yamamoto s CBA and BLA catalysts 3, 7, and 8 are excellent. Narasaka s chiral titanium catalyst 31 and Evans s chiral copper catalyst 24 are outstanding chiral Lewis acid catalysts of the reaction of 3-alkenoyl-l,2-oxazolidin-2-one as dienophile. These chiral Lewis acid catalysts have wide scope and generality compared with the others, as shown in their application to natural product syntheses. They are, however, still not perfect catalysts. We need to continue the endeavor to seek better catalysts which are more reactive, more selective, and have wider applicability. [Pg.48]

A frequently used catalytic system used for the catalytic enantioselective carbo-Diels-Alder reaction of N-alkenoyl-l,3-oxazolidin-2-one 4 is the chiral TADDOL-Ti(IV) 6 [14] complexes (Scheme 8.2 see Ghapter 1 in this book, by Hayashi) [15]. [Pg.309]

Fig, 8,9 The calculated model complexes formed between 3-acroloyl-l, 3-oxazolidin-2-one and an achiral analog of TADDOL-TiCl2,... [Pg.312]

Recently, Lee and co-workers reported an efficient method for the preparation of enantiomerically pure oxazolidin-2-ones from aziridine-2-carboxylates 186 (Scheme 3.68) [128]. This one-pot aziridine ring-opening and subsequent intramolecular cyclization process was highly regio- and stereoselective, affording 187 in high yield. [Pg.99]

In a total synthesis of the macrolidc antibiotic cytovaricin, the highly stereoselective addition of (47 ,5iS )-4-methyl-3-(1 -oxopropyl)-5-phenyl-1,3-oxazolidin-2-one to benzyloxyacetaldehyde is one of the key steps giving the adduct which serves as the C, —Cfi unit in the target molecule95 ... [Pg.497]

Aldol Reaction of (4R,5,5)-3-(2-cliloro-l-oxoethyl)-4-inefliyl-5-phcnyl-l,3-oxazolidin-2-one Typical Procedure ... [Pg.500]

An entry to. yyrt-2-methoxy-3-hydroxycarboxylic acids is also opened using similar methodology. Thus the norephedrine derived (4/ ,5S)-3-(2-methoxy-l-oxoethyl)-4-methyl-5-phenyl-1,3-oxazolidine-2-one 23105a, as well as the phenylalanine derived (4S)-4-benzyl-3-(2-methoxy-l-oxoethyl)-l,3-oxazolidin-2-one 25105b, can be added to aldehydes via the boron enolates to give, after oxidative workup, the adducts in a stereoselective manner (d.r. 96 4, main product/sum of all others). Subsequent methanolysis affords the methyl esters. [Pg.502]

As outlined in Section 1.3.4.2.3.1., the boron cnolate of (4.V)-4-isopropyl-3-( l-oxopropyl)-l, 3-oxazolidin-2-one (1) reacts with 2-methylpropanol to give in effect one adduct, the total amount of the other three isomers being <0.2%. [Pg.506]

However, addition of the corresponding oc-unsubstituted enolate, derived from (4S)-3-acetyl-4-isopropyl-1,3-oxazolidin-2-one (3), under similar conditions delivers a 52 48 mixture of dia-slcreomers6 93. [Pg.507]

PRACTICAL SYNTHESIS OF NOVEL CHIRAL ALLENAMIDES (R)-4-PHENYL-3-(l,2-PRO PADIENYL)OXAZOLIDIN-2-ONE... [Pg.77]

Aluminum-based catalyst (S,S)-diazaaluminolidine 54 promoted the cycloaddition [57] between 5-(benzyloxymethyl)-l,3-cyclopentadiene and 3-acryloyl-l, 3-oxazolidin-2-one, leading to the cycloadduct in high yield and high enantiomeric excess (94%) (Equation 3.14). [Pg.116]

Chiral titanium- and scandium-based catalysts (61 and 62, Figure 3.11) were used to accelerate the cycloadditions of acyl-l,3-oxazolidin-2-ones 60 (Scheme 3.14) with butadiene, isoprene and cyclopentadiene. The cycloadditions... [Pg.118]

Certain reagents promote ring opening and subsequent cyclization to give other heterocycles. For example, di-tert-butyl dicarbonate induces the stereoselective ring transformation of N-alkyl aziridines 159 into oxazolidin-2-ones 160 <96TET2097>. [Pg.60]

The "one-pot domino reaction" of A/-benzylaniline with benzaldehyde in refluxing toluene results in a mixture of oxazolidines via a transient azomethine ylide (Scheme 14) <96S367>. The 2-benzoyloxazolidine 69 rearranges spontaneously to the oxazine 70 <96JHC1271>. The ring-closure of derivatives 71 (R = H or Me) of (f )-phenylglycinol to oxazolidin-2-ones... [Pg.214]


See other pages where 3- oxazolidin-2-ones is mentioned: [Pg.38]    [Pg.623]    [Pg.728]    [Pg.267]    [Pg.21]    [Pg.4]    [Pg.5]    [Pg.6]    [Pg.23]    [Pg.25]    [Pg.25]    [Pg.26]    [Pg.27]    [Pg.311]    [Pg.328]    [Pg.329]    [Pg.330]    [Pg.337]    [Pg.78]    [Pg.99]    [Pg.487]    [Pg.497]    [Pg.507]    [Pg.77]    [Pg.215]   
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1,2-Oxazolidin

1.3- Oxazolidin-2-ones compounds

1.3- Oxazolidin-2-ones, as chiral dienophiles Diels-Alder reaction

3- -l,3-oxazolidin-2-one

3- oxazolidine-2-one

3- oxazolidine-2-one

3-Acryloyl-l,3-oxazolidin-2-one

Acyl-1,3-oxazolidin-2-ones

Diastereoselectivity oxazolidin-2-ones

Isoxazolidine-4-oxazolidin-2-ones

Oxazolidin-2-ones esters

Oxazolidin-2-ones, alkylation

Oxazolidin-2-ones, from

Oxazolidin-2-ones, from amino acids

Oxazolidine

Oxazolidines

Spiro-Oxazolidin-4-ones

Synthesis of (R)-N-propionyl-4,5,5-trimethyl-l, 3-oxazolidin-2-one

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