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Aldehydes trimethylsilyl oxazoles

For example, 4-methyl-2-(trimethylsilyl)oxazole 1005 readily reacts with aldehydes to yield 4-methyl-2-oxazolemethanol derivatives 1009 after desilylation. Aliphatic and aromatic aldehydes are useful in this reaction. In addition, modest diastereoselection was observed with chiral aldehydes, such as glyceraldehyde acetonide and 2-phenylpropanal. Examples are shown in Table 1.75. [Pg.222]

TABLE 1.75 4-METHYL-2-OXAZOLEMETHANOL DERIVATIVES FROM 4-METHYL-2-(TRIMETHYLSILYL)OXAZOLE AND ALDEHYDES, 222... [Pg.639]

Various other [3 + 2] cycloadditions, affording chiral, anellated C6o derivatives with stereogenic centers in the addends are reported in literature. The products were generally obtained as racemates and resulted from reaction of buckminsterfullerene with species like 2,3-disubstituted 2//-azirincs (via nitrile ylides [under direct irradiation] or via 2-azaallenyl radical cations [sensitization by photoinduced electron transfer]),365 1-substituted 5-diazopentane-1,4-diones (via cyclic carbonyl ylides),366 7-alkylidene-2,3-diazabicyclo[2.2.1] hept-2-ene (via a diradicaloid trimethylenemethane derivative),367 1-benzylpy-razolidine-3-ones in the presence of aldehydes (via pyrazolidinium ylides),368 2-trifluoromethyl-2,5-dihydro-l,3-oxazol-5-ones (via nitrile ylides),369 nitro-alkanes in the presence of triethylamine and trimethylsilyl chloride (via N-silyloxynitrones),370 or dv-HOCH2 CH=C H C H 2 OCO 2 H( in the presence of... [Pg.88]

Control in the selection of ring substituents is an important element of oxazole synthesis. This is a feature of a new route that employs 0-trimethylsilyl acyltrimethylsilane cyanohydrins (148), which are obtained from aldehydes or acyl silanes <92JOC333l>. These intermediates, which provide the C-5 substituent and four of the five ring atoms, are reacted sequentially with organolithium reagents (C-4 substituent) and acyl chlorides or anhydrides (C-2 substituent) to furnish, -bis(trimethylsilyl) enamines (149), which cyclize under thermal conditions or upon treatment with trimethylsilyl trilluoromethanesulfonate (Scheme 68). The range of oxazoles accessible by this method includes those with alkyl, alkenyl, phenyl, and functionalized substituents at C-2, alkyl, alkenyl, and phenyl substituents at C-4, and alkyl and phenyl substituents at C-5. The rare 4-(, -dialkylamino)oxazoles (150) may also be prepared. [Pg.301]


See other pages where Aldehydes trimethylsilyl oxazoles is mentioned: [Pg.222]    [Pg.218]    [Pg.330]    [Pg.140]   
See also in sourсe #XX -- [ Pg.222 , Pg.222 , Pg.227 ]




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Aldehydes oxazole

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