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Tetrazole derivatives

Table 15 gives a sampling of other pharmaceuticals derived from hydraziae. Cefazolin, a thiadiazole tetrazole derivative, is one of the most widely used antibacterial dmgs in U.S. hospitals (see Antibiotics, P-LACTAMs). Procarbazine, an antineoplastic, is a monomethyUiydrazine derivative (220). Fluconazole has shown some promise in the treatment of AIDS-related fungal infections. Carbidopa is employed in the treatment of Parkinson s disease. FurazoHdone is a veterinarian antibacterial. [Pg.292]

The presence of a 5-oxo group in the 1,2,4-triazines, as in 3-hydrazino-2,5-dihydro-5-oxo[l,2,4]triazines, does not alter the direction of cycliza-tion by the action of nitrous acid. The initial products are azido compounds 1016, which can cyclize spontaneously to tetrazolo[l,5-b][l,2,4]triazines 1017 (77JHC1221, 77JOC1866) rather than the previously reported isomeric structure. On the other hand, when the cyclization onto N-2 is impossible, as in derivative 1018, the azidotetrazolo equilibrium 1018 1019 exists (76JOC2860 77JOC1866). It exists in the solid state at least as the tetrazole derivative (Scheme 190). [Pg.151]

In an analogous way heteroaromatic diazonium ions that contain an acidic NH group in the heteroaromatic ring, e. g., the diazole, triazole, and tetrazole derivatives 5.1, 5.2, and 5.3, lose that proton even in weakly to strongly acidic solutions, as... [Pg.95]

The parent tetrazole derivative of glyphosate 78 has been reported as a product of the 1,3-dipolar cycloaddition of n-Bu3SnN3 across the nitrile linkage in 76 and subsequent hydrolysis of the resulting diester 77 (62). [Pg.30]

Several other studies concerning tetrazole-containing compounds were leptorted. The 1-bromo-glycosyl cyanide 15 was converted to the tetrazole derivative 16 in 72% yield by treatment with 2 eq LiNs/DMF/S d <96T9121>. Shorter reaction times led to formation of the 1-azido-pyranosyl cyanide. (Hydroxyphenyl) carbenes could be formed by thermal decomposition of the appropriate 5-substituted tetrazoles 17 <96JOC4462>. [Pg.165]

The 1 1 complexes arising from interaction of the hydride (as a complex with ether or trimethylamine) and various tetrazole derivatives are explosive. Tetrazoles mentioned are 2-methyl-, 2-ethyl-, 5-ethyl-, 2-methyl-5-vinyl-, 5-amino-2-ethyl-, l-alkyl-5-amino-, and 5-cyano-2-methyl-tetrazole. [Pg.48]

Aluminium hydride See Aluminium hydride Tetrazole derivatives See other tetrazoles... [Pg.307]

Cyano-2-methyltetrazole [91511-39-6] N = N / h3c"n N Aluminium hydride See Aluminium hydride Tetrazole derivatives See other tetrazoles c3h3n5... [Pg.407]

Dichlorooxadiazolo[3,4-3]pyrazine 181 forms the tricyclic tetrazole derivative 182 on reaction with sodium azide (Equation 44). The 7-azido group readily undergoes nucleophilic substitution <1997CHE977>. [Pg.733]

A review has been published on the methods of functionalization of tetrazoles for the period 2001 to mid 2005 <06RJOC469>. The search for new radical structures having both low selectivity and high reactivity toward the addition reaction onto alkenes has led to a new tetrazole-derived thiyl radical <06JOC9723>. [Pg.233]

Abstract In this chapter, selected results obtained so far on Fe(II) spin crossover compounds of 1,2,4-triazole, isoxazole and tetrazole derivatives are summarized and analysed. These materials include the only compounds known to have Fe(II)N6 spin crossover chromophores consisting of six chemically identical heterocyclic ligands. Particular attention is paid to the coordination modes for substituted 1,2,4-triazole derivatives towards Fe(II) resulting in polynuclear and mononuclear compounds exhibiting Fe(II) spin transitions. Furthermore, the physical properties of mononuclear Fe(II) isoxazole and 1-alkyl-tetrazole compounds are discussed in relation to their structures. It will also be shown that the use of a,p- and a,C0-bis(tetrazol-l-yl)alkane type ligands allowed a novel strategy towards obtaining polynuclear Fe(II) spin crossover materials. [Pg.138]

Fe N(entz)3 2]A2 with A=BF4 , C104 with N(entz)3=tris[(tetrazol-l-yl)-eth-ane]amine, are polymeric Fe(II) ST complexes of a 1-substituted tetrazole derivative [69, 70]. [Pg.257]

For some compounds NMR data were collected to determine the equilibrium constants for the tautomerism between the azide form such as for 30 and the tetrazole derivative 31 (Scheme 3). Similar investigations were conducted for the compounds 28 and 29 and the solvent effects and substituent effects are discussed <1996JHC747>. [Pg.354]

The photochemical reaction of azide-functionalized tetrazole derivatives such as 38 leads to the formation of the 5-5 bicyclic ring system 40 (Scheme 5) in very moderate yields <1999JHC863>. This reaction is believed to proceed via the singlet nitrene intermediate 39. Attack at the aromatic substituent in ortho position leads to product 40 <1974JOG2546> by subsequent cyclization. This intermediate is deprotonated during the workup conditions to the mesoionic tricyclic derivative 41. [Pg.356]

The conversion of acyl isothiocyanates 47 with sodium azide leads to thiol-functionalized tetrazole derivatives such as 48 (Scheme 9) <1995PJC1022>. The reaction of 48 with chloro acetonitrile leads to an intermediate 49 that reacts in... [Pg.357]

An alternative approach to 5-5 bicyclic fused ring systems utilizing a condensation reaction was described by Moderhack et al. <2000JPC591> (Scheme 10). The amino-substituted tetrazole derivatives 52 and 54 gave the neutral 53 as well as the mesoionic derivatives 55 in moderate to excellent yields (16-86% R = CH3 or Ph). [Pg.358]

The [3+2] cycloaddition of azides to double and triple bond systems has found considerable interest over the last couple of years. The reaction can either be performed under thermal conditions or by copper(i) catalysis <2001AG(E)2004, 2002AG(E)2596>. In an attempt to broaden the chemistry of such cycloaddition processes, Sharpless et al. reported the generation of tetrazole derivatives 61 by an intramolecular process (Scheme 12). In... [Pg.358]

Thus, the substituted tetrazoles 113 upon oxidation with lead tetraacetate gave rise to the fused tetrazoles 114, in most cases in high yields. Tetrazole derivatives 115, bearing an anisidine side chain, also underwent oxidative cyclization and afforded 10-methoxycarbonylmethyltetrazolo[l,5- ]quinoxaline 116 in good yield. This compound was obtained as a mixture of tautomers (with participation of the methylene hydrogen atoms) and the depicted tautomeric form 116 proved to be dominant. [Pg.839]

Cyclization of tetrazole derivatives 66a, 66e, and 69e-h was also achieved by heating in the presence of anhydrides and base, which gave 5,7-diacyl pyrrolotetrazoles 72a-c, and 73a and 73d-i, respectively, in moderate to excellent yields. [Pg.954]

Figure 2.3 Use of triazole and tetrazole derivatives for glycosyl fluoride synthesis. Figure 2.3 Use of triazole and tetrazole derivatives for glycosyl fluoride synthesis.
In this period, the most important reactions of the isocyanides were the formations of tetrazole derivatives from isocyanides and hydrazoic acid, a process introduced in 1910 by Oliveri-Mandala and Alagna, and then in 1921 Passerini introduced the reaction (P-3CR), which was the first 3-component reaction of the isocyanides. In the 1940s Baker,and later Dewar, proposed mechanisms of the P-3CR. The important role of the intermediate hydrogen bond between the carboxylic acid and the carbonyl compound in suitable solvents was mentioned. ... [Pg.6]

Table 4 N NMR shifts of some tetrazole derivatives from external MeN02 . Table 4 N NMR shifts of some tetrazole derivatives from external MeN02 .

See other pages where Tetrazole derivatives is mentioned: [Pg.43]    [Pg.113]    [Pg.164]    [Pg.164]    [Pg.48]    [Pg.434]    [Pg.451]    [Pg.511]    [Pg.249]    [Pg.4]    [Pg.452]    [Pg.159]    [Pg.351]    [Pg.361]    [Pg.361]    [Pg.662]    [Pg.666]    [Pg.825]    [Pg.399]    [Pg.131]    [Pg.380]    [Pg.624]    [Pg.627]    [Pg.632]    [Pg.634]    [Pg.673]   
See also in sourсe #XX -- [ Pg.113 ]

See also in sourсe #XX -- [ Pg.113 ]




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Amino Tetrazole Derivatives

Diaziridine derivatives, from tetrazoles

Ring-fused derivatives tetrazoles

Tetrazoles and ring-fused derivatives

Tetrazoles derivatives

Tetrazoles derivatives

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