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Hydroxy amines from amino ketones

The hexahydropyrimidine (58), formed from l-phenylpropane-l,2-dione and propane-1,3-diamine, is an excellent precursor for the a-diimine macrocyclic complexes (60), presumably via the amino ketone (59) (Scheme 36).126 In this case, intramolecular cyclization of (59) to (58) is reversible, so that the metal ion can exert a thermodynamic template effect in formation of the complex (60). This represents a further example of a long-known phenomenon in which a metal ion can stabilize an a-diimine structure by virtue of the formation of stable five-membered chelate rings. Many 2-hydroxy- or 2-mercapto-amines undergo reaction with a-dicarbonyl compounds to yield heterocyclic compounds rather than a-diimines. However, in the presence of suitable metal... [Pg.435]

Other alkylation reactions are observed in the condensation of cyclo-propanium ions (generated in situ) with ketones 89.92)> enamines6, nitroalkanes 93>, dimethylmalonate 92>, and phenol. 92> Thus, 7-hydroxy-7-pyrrolidinobicyclo[4.1.0]heptane (56) as well as the 7,7-dipyrrolidino derivative (54) react with acetone to give the amino ketone 113. 89> This reaction may be pictured as an addition of the enol form of the ketone to the reactive iminium salt formed from the carbinol amine. In like manner, phenol undergoes ortho substitution with the carbinol amine 114 formed from cyclopropanone and dimethyl amine. [Pg.116]

Diethoxy a-hydroxy-benzylphosphonate has been reported to undergo nucleophilic substitution with primary amines to give a-aminophosphonates (Scheme 184) " Primary aromatic amines have been prepared from arylboronic acids in the presence of 0-(2,4-dinitrophenyl)hydroxylamine. " Reaction of iV-t-butanesulfinyl a-haloimines with alkoxides has been reported to give iV-t-butanesulfinyl 2-amino acetals that are precursors for TMSOTf-promoted synthesis of iV-protected a-amino aldehydes and ketones and for the HCl-promoted synthesis of 2-amino acetal hydrochlorides and a-amino ketone and a-amino aldehyde hydrochlorides (Scheme 185). " ... [Pg.532]

Several methods for asymmetric C —C bond formation have been developed based on the 1,4-addition of chiral nonracemic azaenolates derived from optically active imines or enamines. These methods are closely related to the Enders and Schollkopf procedures. A notable advantage of all these methods is the ready removal of the auxiliary group. Two types of auxiliaries were generally used to prepare the Michael donor chiral ketones, such as camphor or 2-hydroxy-3-pinanone chiral amines, in particular 1-phenylethanamine, and amino alcohol and amino acid derivatives. [Pg.980]

No stereoselectivity was observed in the formation of a 1 1 diastereomeric mixture of 2-hydroxy-2-phenylethyl p-tolyl sulfoxide 145 from treatment of (R)-methyl p-tolyl sulfoxide 144 with lithium diethylamide . However, a considerable stereoselectivity was observed in the reaction of this carbanion with unsymmetrical, especially aromatic, ketones The carbanion derived from (R)-144 was found to add to N-benzylideneaniline stereoselectivity, affording only one diastereomer, i.e. (Rs,SJ-( + )-iV-phenyl-2-amino-2-phenyl p-tolyl sulfoxide, which upon treatment with Raney Ni afforded the corresponding optically pure amine . The reaction of the lithio-derivative of (-t-)-(S)-p-tolyl p-tolylthiomethyl sulfoxide 146 with benzaldehyde gave a mixture of 3 out of 4 possible isomers, i.e. (IS, 2S, 3R)-, (IS, 2R, 3R)- and (IS, 2S, 3S)-147 in a ratio of 55 30 15. Methylation of the diastereomeric mixture, reduction of the sulfinyl group and further hydrolysis gave (—)-(R)-2-methoxy-2-phenylacetaldehyde 148 in 70% e.e. This addition is considered to proceed through a six-membered cyclic transition state, formed by chelation with lithium, as shown below . ... [Pg.616]

Therefore, in principal, condensation of a primary amine with an enantiomerically pure ketone should allow asymmetric synthesis of a-substituted primary amines. This approach has been applied to the synthesis of a-amino acids, for example, using the imine prepared from a-amino esters and (l.S, 2,S ,5,S )-2-hydroxy-3-pinanone, via an amino-substituted ester enolate anion with some success39 40. Application of this approach to simple primary amines has seldom been reported. [Pg.673]

Novel nor-seco baccatin 99 was synthesized in 92% yield through oxidative cleavage of the A ring of 14-OH-DAB (75) with periodic acid via the hydroxy ketone intermediate 100 (Scheme 19). Protection of the 7-hydroxyl of 99 as TES ether followed by reduction of the aldehyde with sodium borohydride yielded nor-seco baccatin alcohol 101 in 80% yield. Nor-seco 13-amino-baccatins 102 and 103 were synthesized from 101 and 99a via the Mitsunobu reaction and reductive amination, respectively, in high yields (Scheme 20). [Pg.110]


See other pages where Hydroxy amines from amino ketones is mentioned: [Pg.327]    [Pg.133]    [Pg.95]    [Pg.133]    [Pg.119]    [Pg.142]    [Pg.133]    [Pg.36]    [Pg.1119]    [Pg.386]    [Pg.389]    [Pg.87]    [Pg.36]    [Pg.1411]    [Pg.69]    [Pg.191]    [Pg.146]    [Pg.1289]    [Pg.187]    [Pg.6]    [Pg.276]    [Pg.1289]    [Pg.290]    [Pg.33]    [Pg.77]    [Pg.352]    [Pg.228]    [Pg.228]    [Pg.382]    [Pg.197]    [Pg.728]    [Pg.1607]    [Pg.191]    [Pg.338]    [Pg.287]    [Pg.259]    [Pg.817]    [Pg.6336]    [Pg.206]   
See also in sourсe #XX -- [ Pg.152 ]




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0’Amino ketones

Amination hydroxy

Aminations ketones

Amine from ketones

Amine ketones

Amino hydroxy

From Amino Ketones

From aminals

From amines

Hydroxy amines

Hydroxy amines from ketones

Hydroxy ketones

Ketones amination

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