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Bonding phosphorus oxychloride

Chloroquinazoline can be isolated, at best in 40% yield, by boiling 2-hydroxyquinazoline with phosphorus pentachloride in phosphorus oxychloride for 45 min, and attempts to improve this yield have proved fruitless. The yields are much higher when an aryl group is in position 4 w hich suggests an attack of the 3,4-double bond in 2-hydroxy- and 2-chloro-quinazolines by the chlorinating agent. [Pg.295]

For the halogen-metal exchange reaction of bulkier halopyrimidines, steric hindrance retards the nucleophilic attack at the azomethine bond. As a consequence, halogen-metal exchange of 5-bromo-2,4-di-r-butoxypyrimidine (43) with n-BuLi could be carried out at -75 °C [20]. The resulting lithiated pyrimidine was then treated with n-butylborate followed by basic hydrolysis and acidification to provide 2,4-di-f-butoxy-5-pyrimidineboronic acid (44). 5-Bromopyrimidine 43 was prepared from 5-bromouracil in two steps consisting of a dehydroxy-halogenation with phosphorus oxychloride and an SnAt displacement with sodium r-butoxide. [Pg.382]

The degradation of a-aminocarboxylic acids has proven to be a useful method for the preparation of iminium salts. For example, treatment of N- methylpipecolic acid (97) with phosphorus oxychloride gave 94% of the iminium salt (98) (Scheme 7) (76JA7448). The synthetic utility of this approach is illustrated by the synthesis of tetrahydroberberine (Scheme 8) (78JOC2115). The advantage of this method for the preparation of iminium salts is that the position of the carbon-nitrogen double bond can be controlled. [Pg.374]

Pyrrolizidine amino-alcohols are readily dehydrated for example, hydroxyheliotridane and retronecanol, when treated with sulfuric acid, afford heliotridene (see e.g., refs. 105 to 107). A more complicated dehydration reaction is the transformation of the alkaloid rosmarinine into the alkaloid senecionine.83 Dehydration of 1-hydroxy-l-carbethoxypyrrolizidine53 in the presence of phosphorus oxychloride in pyridine results mainly in the formation of the A1,8-unsaturated ester (see Section II, E). The authors61,62 claimed that the dehydration product of l-carbethoxy-2-hydroxy-3-oxopyrrolizidine contained a A1,2-double bond (159). Later, however, the UV, IR, and NMR spectra67 revealed that the double bond had migrated the... [Pg.357]

Phosphorus-containing macrocycles, 990, 996, 998 macrocychc effect, 1002 ring size, 1003 stereochemistry, 1003 Phosphorus heterocycles transition metal complexes, 1041 Phosphorus ligands, 989-1061 ir-acid series, 1033 bonding, 1030-1041 cone angle concept, 1012 trigonal bipyramidal complexes, 1036 Phosphorus oxychloride metal complexes, 500 Phosphorus ylides transition metal complexes, 1056 Phosphorylation biological, 978 Phosvitin, 975 Photochromism... [Pg.1092]

During studies on the total synthesis of Aspidosperma type alkaloids, unexpected difficulty was encountered in attempts to reduce the amide carbonyl group of the intermediate 1. Thus, many attempts to reduce 1 with lithium aluminium hydride resulted in reduction of both the amide carbonyl group and the C=C double bond. In an effort to circumvent this problem 1 was reacted with hot phosphorus oxychloride and the intermediate thus obtained treated with sodium borohydride in anhydrous methanol. The product which was isolated, however, was the pentacyclic compound 2, which was obtained in 50% yield. [Pg.102]

Hexafluoroacetoneazine (47, 276a) and hexafluoroacetonebis(trifluoro-methyl)hydrazone (55) have been synthesized similarly. Dehydration has been achieved with phosphorus oxychloride (47) or oleum (276a) for the ketazine and oleum for the hydrazone. S-Arylsulfinamides also react only via cleavage of an N—H bond (46). Derivatives of 96a are available from (phenylimino)triphenylphosphorane via aminals 97 (293,295). [Pg.264]


See other pages where Bonding phosphorus oxychloride is mentioned: [Pg.785]    [Pg.193]    [Pg.262]    [Pg.293]    [Pg.296]    [Pg.104]    [Pg.195]    [Pg.522]    [Pg.298]    [Pg.423]    [Pg.699]    [Pg.359]    [Pg.370]    [Pg.281]    [Pg.312]    [Pg.315]    [Pg.565]    [Pg.32]    [Pg.72]    [Pg.97]    [Pg.67]    [Pg.361]    [Pg.493]    [Pg.51]    [Pg.345]    [Pg.785]    [Pg.337]    [Pg.131]    [Pg.281]    [Pg.282]    [Pg.83]    [Pg.237]    [Pg.539]    [Pg.72]    [Pg.97]    [Pg.345]    [Pg.237]    [Pg.58]    [Pg.395]    [Pg.785]   
See also in sourсe #XX -- [ Pg.187 ]




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Oxychloride

Oxychloride bond

Phosphorus bonding

Phosphorus oxychloride

Phosphorus oxychlorides

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