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Phosphoranes Subject

Because in this case an elimination reaction could occur to form an a,/ -unsaturated ester, use of two equivalents of the phosphorane should be avoided.1The (a-acylalk-ylidene)triphenylphosphorane can be subjected to a subsequent Wittig reaction with an aldehyde.[4] [5],[8]... [Pg.299]

Attempts to initiate formation of a nitrene, and its rearrangement to the iminooxo-phosphorane 80, by subjecting l-chloroamino-2,2,3,4,4-pentamethylphosphetane 1-oxide to a-elimination with sodium methoxide proved unsuccessful48). In contrast, however, the phosphorylhydroxylamides 88 rearrange in the presence of tert-butyl-amine to the heterocumulene 89 and then add base to give the phosphonic diamides 90 (>90%)49). The reaction is reminiscent of the well-known Lossen degradation. [Pg.92]

The fact that tetrazolo[l,5- ]pyridine reacts with phosphines - via ring opening to the valence bond isomer azide -to give a phosphorane has been long recognized. Some novel applications of this transformation have been published during the recent period. The fused tetrazoles subjected to this reaction, the resulting phosphoranes, and the literature sources are summarized in Table 4. [Pg.652]

Reaction with a first aldehyde transforms 176 into the vinylphosphonium chloride 177, which for practical reasons is subjected to an anion-exchange process, leading to the phosphonium salt 178. From this, phenyllithium treatment liberates the allenic phosphorane 179, an intermediate that has previously been used to prepare allenes from aldehydes [69], in the present case providing the products 180. The same protocol has also been applied to o-alkynylbenzaldehydes to yield allenes of interest as model compounds for the study of Schmittel and Myers-type cyclization reactions [70]. [Pg.207]

Several papers have been devoted to the subject of reactions of phosphoranes with carboxylic acids and their derivatives. Thus triphenylphosphine dibromide (111) in acetonitrile cleaves lactones,93 while the corresponding dichloride (112) converts esters into acid chlorides.94 The reactions of esters with phosphorus pentachloride (101) have been studied further,95 and the influence of structural changes on the yields of products (113) and (114) has resulted in minor modifications to the mechanism previously96 outlined. [Pg.66]

Even if some of the optically active spirophosphoranes mentioned above can exist as single species in the solid state, all of them are more or less rapidly transformed, when dissolved, into binary mixtures of diastereoisomers114-129 such as 12 and T3. However, a third type of synthesis yielded pure, optically active phosphoranes not subject to change when dissolved129. This was obtained by the stereospecific synthesis of the oxazaphos-pholidine 53130 (Scheme 5) derived from the —(1R, 2S)enantiomer of ephedrine by means... [Pg.208]

A neutral phosphorane core (181) was generated from the treatment of tetra(p-me-thoxymethyl)phenylphosphonium bromide (180)[2011 with 4-lithiobenzylmethyl ether. This pentavalent core was subjected to the previously described procedures to generate the first five-directional dendritic macromolecule 182 (Scheme 4.50). [Pg.95]

The C,5 aldehyde (4) reacted very readily with the phosphorane generated from the C5 phosphonium bromide (157), and when the resulting product was subjected to acid hydrolysis, retinaldehyde (2) was obtained (Pommer, 1960 Makin, 1976). [Pg.52]

A basically different approach to sialic acid synthesis was recently described by Mirzayanova et al. (1970) (Figure 13). N-Acetyl-o-manno-samine was subjected to the cyanohydrin reaction, the cyano group converted to an aldehyde, and the latter condensed with phosphorane XLVII via the Wittig reaction. Mild hydrolysis gave a crystalline product that was identical to natural NANA in elemental analysis, optical rotation, melting point, chromatographic behavior, and color reactions. [Pg.40]


See other pages where Phosphoranes Subject is mentioned: [Pg.75]    [Pg.358]    [Pg.529]    [Pg.301]    [Pg.490]    [Pg.248]    [Pg.63]    [Pg.529]    [Pg.6]    [Pg.518]    [Pg.156]    [Pg.4]    [Pg.89]    [Pg.162]    [Pg.314]    [Pg.490]    [Pg.97]    [Pg.199]    [Pg.1266]    [Pg.130]    [Pg.195]    [Pg.197]    [Pg.334]    [Pg.691]    [Pg.454]    [Pg.693]    [Pg.265]    [Pg.567]    [Pg.184]    [Pg.84]   
See also in sourсe #XX -- [ Pg.111 ]




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