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Phosphorazidic acid Curtius reaction

The procedure described is essentially that of Shioiri and Yamada. Diphenyl phosphorazidate is a useful and versatile reagent in organic synthesis. It has been used for racemlzatlon-free peptide syntheses, thiol ester synthesis, a modified Curtius reaction, an esterification of a-substituted carboxylic acld, formation of diketoplperazines, alkyl azide synthesis, phosphorylation of alcohols and amines,and polymerization of amino acids and peptides. - Furthermore, diphenyl phosphorazidate acts as a nitrene source and as a 1,3-dipole.An example in the ring contraction of cyclic ketones to form cycloalkanecarboxylic acids is presented in the next procedure, this volume. [Pg.188]

One of the most useful variants of the Curtius reaction is the reaction of carboxylic acids with diphenyl phosphorazidate (DPPA (Ph0)2P(0)N3) in the presence of base, such as triethylamine (equation 2). " ... [Pg.797]

Diethyl phosphorocyanidate continues to be exploited for the purposes of conventional organic synthesis. Reported applications of the compound include a new conversion of carboxylic acids into esters or amides and also a ring-expansion reaction of 1,3-thiazoles in the penicillin series. Diphenyl phosphorazidate has been employed in a modified Curtius reaction/ in peptide synthesis, and for... [Pg.118]

General. Diphenyl phosphorazidate is a readily available, nonexplosive, and relatively stable azide widely used as a reagent in peptide synthesis, " and as a versatile reagent in a wide array of organic transformations. DPPA has been successfully utilized in the synthesis of a-amino acids and o-aryl carboxylic acids direct preparation of thiol esters from carboxylic acids and thiols the stereospecific preparation of alkyl azides and the phosphorylation of alcohols and amines The application of DPPA in a modified Curtius reaction permits a simple one-step conversion of carboxylic acids to urethanes under mild reaction conditions. DPPA acts as a nitrene source, and can undergo 1,3-dipolar cycloaddition reactions. The Curtius degradation of carboxylic acids in the presence of f-butanol gives the Boc-protected amine directly (eq 1). [Pg.168]

The first step in the overall synthetic scheme (Scheme 6) is the condensation of an appropriate carboxylic acid with trifluoroacetaldehyde. The carboxylic acid is chosen to impart specificity for the target enzyme. In one example,[28 the dianion of cyclohexanepropanoic acid (29) was formed by the addition of LDA and then quickly condensed with trifluoroacetaldehyde to form the p-hydroxy acid 30 as a racemic mixture of erythro- and threo-isomers. The p-hydroxy acid 30 is then protected with TBDMSOTf forming 31. Diphenyl phosphorazidate, TEA, and benzyl alcohol were then utilized in a Curtius rearrangement of the protected alcohol 31, which proceeds through an isocyanate intermediate that yields the protected amino alcohol 32 upon reaction with benzyl alcohol. In order for this step to occur at an appreciable rate, a second equivalent of triethylamine had to be added. The amino alcohol 32 was then deprotected and coupled with Boc-Phe-Leu-OH to give the trifluoromethyl alcohol 33, which was oxidized to the corresponding trifluoromethyl ketone 34 as a 1 1.2 mixture of diastereomers using the Dess-Martin periodinane procedure. Thus far, the compound shown in Scheme 6 is the only compound that has been synthesized by this method, but it is reasonable to assume that many other similar fluoro ketones can be produced by this scheme. [Pg.239]


See other pages where Phosphorazidic acid Curtius reaction is mentioned: [Pg.811]    [Pg.816]    [Pg.356]    [Pg.811]    [Pg.816]    [Pg.304]    [Pg.804]    [Pg.804]    [Pg.315]    [Pg.746]   
See also in sourсe #XX -- [ Pg.6 , Pg.797 , Pg.811 , Pg.816 ]

See also in sourсe #XX -- [ Pg.797 , Pg.811 , Pg.816 ]

See also in sourсe #XX -- [ Pg.6 , Pg.797 , Pg.811 , Pg.816 ]

See also in sourсe #XX -- [ Pg.797 , Pg.811 , Pg.816 ]




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