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Preparation reaction with sodium azide

Aryl and vinyl nitriles have been prepared very efficiently from the corresponding bromides by palladium-catalyzed reactions under microwaves. This energy source has been employed for the conversion of these nitriles into aryl and vinyl tetrazoles by cycloaddition reactions with sodium azide (Scheme 9.66). The direct transformation of aryl halides to the aryl tetrazoles in a one pot procedure could be accomplished both in solution and on a solid support [115], The reactions were complete in a few minutes, a reaction time considerably shorter than those previously reported for the thermal reactions. The cydoadditions were performed with sodium azide and ammonium chloride in DMF and, although no explosion occurred in the development of this work, the authors point out the necessity of taking adequate precautions against this eventuality. [Pg.334]

Alkyl (or aryl) 5-aminotetrazoles (38) can be prepared either from thioureas by reaction with sodium azide in the presence of lead carbonate89 or from 2-thiopseudourea hydriodides by reaction with sodium azide.70... [Pg.109]

Conversion of the 3, 5 -diacetyl thymidine 652 (R = Me) to the chloro derivative 653 followed by reaction with sodium azide in anhydrous DMF gave 654, whose hydrolysis gave 655 (86JHC1401). The 2 -deoxy-2, 2 -difluoro analog of 655 was prepared (93EUP576230) (Scheme 132). [Pg.209]

Several different nucleophilic displacement reactions of ring substituents were utilized in the synthesis of 3-azido-oxetane-2-carboxylates (Scheme 12) <2001TL4247>. The triflate ester 66, prepared from the corresponding trans-/3-hydroxy ester and triflic anhydride, was displaced by reaction with sodium azide, and inversion of configuration, to... [Pg.337]

Methyl 4,6-0-benzylidene-3-deoxy-a-D-ribo-hexopyranoside (56) was benzoylated, debenzylidenated, and partially p-toluenesulfon-ylated to 57 this was converted into 58 by reaction with sodium iodide, followed by catalytic reduction. The methanesulfonate of 58 was converted into 59 by reaction with sodium azide in N,N-dimethylformamide, and 59 was converted into 4-azido-3,4,6-trideoxy-a-D-xylo-hexose (60) by acetolysis followed by alkaline hydrolysis. Reduction of 60 with borohydride in methanol afforded 61, which was converted into 62 by successive condensation with acetone, meth-anesulfonylation, and azide exchange. The 4,5-diazido-3,4,5,6-tetra-deoxy-l,2-0-isopropylidene-L-ara/uno-hexitol (62) was reduced with hydrogen in the presence of Raney nickel, the resultant diamine was treated with phosgene in the presence of sodium carbonate, and the product was hydrolyzed under acidic conditions to give 63. The overall yield of 63 from 56 was 4%. The next three reactions (with sodium periodate, the Wittig reaction, and catalytic reduction) were performed without characterization of the intermediate products, and gave (+)-dethiobiotin methyl ester indistinguishable from an authentic sample thereof prepared from (+)-biotin methyl ester. [Pg.212]

Triazole Derivatives. Triazole derivatives are known to possess tumor necrosis factor-a (TNF-a) production inhibitor activity. The synthesis of triazole derivatives can be achieved from alkynes or diynes by a tandem cascade reaction involving 1,3-dipolar cycloaddition, anionic cyclization and sigmatropic rearrangement on reaction with sodium azide. Some of the benzoyl triazole derivatives were considered to be potent local anaesthetics and are comparable with Lidocaine. The triazoles can also be prepared from benzoyl acetylenes,triazoloquina-zoline derivatives, 2-trifluoromethyl chromones, aliphatic alkynes, 2-nitroazobenzenes, ring opening of [ 1,2,4]triazolo [5,1-c] [2,4]benzothiazepin-10 (5//)-one, alkenyl esters and dendrimers. A number of these reactions are outlined in eqs 44 8. [Pg.402]

Taxol and related compounds have also been prepared by coupling cis-glycidic acids with baccatin. Thus the (2R, 3S) glycidic acid 8.1.16 underwent smooth coupling to 7,10-ditroc-baccatin III to give the derivative 8.1.17, which could be converted to docetaxel in good yield by the successive steps of reaction with sodium azide, carbonate formation, and deprotection (301),... [Pg.128]


See other pages where Preparation reaction with sodium azide is mentioned: [Pg.380]    [Pg.41]    [Pg.248]    [Pg.91]    [Pg.336]    [Pg.474]    [Pg.594]    [Pg.87]    [Pg.573]    [Pg.96]    [Pg.370]    [Pg.235]    [Pg.230]    [Pg.58]    [Pg.482]    [Pg.151]    [Pg.244]    [Pg.259]    [Pg.87]    [Pg.178]    [Pg.361]    [Pg.961]    [Pg.53]   
See also in sourсe #XX -- [ Pg.267 , Pg.269 ]




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Azidation reaction

Azides preparation

Azides, reactions

Azides, sodium with

Preparation reaction with

Preparation with

Reaction with azide

Reaction with sodium azide

Sodium azide

Sodium azide preparation

Sodium azide, reaction with azides

Sodium preparation

Sodium reaction with

With Azides

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