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Pyridine A-oxidation

For oximes, the word oxime is placed after the name of the aldehyde or ketone. If the carbonyl group is not the principal group, use the prefix hydroxyimino-. Compounds with the group Z = N—OR are named by a prefix alkyloxyimino- as oxime O-ethers or as O-substituted oximes. Compounds with the group r C=N(0)R are named by adding A-oxide after the name of the alkylideneaminc compound. For amine oxides, add the word oxide after the name of the base, with locants. For example, C5H5N—O is named pyridine A-oxide or pyridine 1-oxide. [Pg.32]

Pyridine A Oxides. Analgesic and antiinflammatory dmgs niflumic acid [4394-00-7] (68) and pranoprofen [52549-17-4] (69) are manufactured from nicotinic acid N-oxide [2398-81 -4]. The antiulcer dmg omeprazole (66) is produced from 2,3,5-trimethylpyridine N-oxide [74409-42-0]. Zinc pyrithione, the zinc salt of pyrithione (45), is a fungicide derived from 2-chloropyridine N-oxide (45). [Pg.336]

In addition to their reactions with amines, Zincke salts also combine with other nitrogen nucleophiles, providing various A -substituted pyridine derivatives. Pyridine A -oxides result from the reaction with hydroxylamine, as exemplified for the conversion of Zincke salt 38 to the A -oxide 39 Reactions of Zincke salts with hydrazine, meanwhile, lead... [Pg.361]

The amination of 2-chloropyridine-A-oxide (53) with potassium amide in liquid ammonia yielded a mixture of 2-(55) and 3-amino-pyridine-A-oxide (56) in 5-10% total yield.This rearrangement might be explained by an aryne mechanism involving 2,3-pyridyne-A-oxide (54). Since the structure of 56, with its quaternary nitrogen atom, is more analogous to that of 3-methoxybenzyne (39) than to that of 2,3-pyridyne (26), an orientation effect directing the amide ion to C-3 can be expected here. [Pg.133]

Acylation with acetyl chloride (giving 94) or protonation permits rapid displacement of the nitro group from 4-nitropyridine A-oxide by the weakly nucleophilic chloride Pyridine A-oxide... [Pg.196]

Pyridines and pyridine A -oxides as additives in asymmetric catalysis 99AG(E)1570. [Pg.258]

HgCl2(pyridine A -oxide), 2, 496 HgCsH9N2P Hg(CN)2(PMe3), 5, 1081 HgC6F i8N4... [Pg.390]

West and colleagues206 have reported the initial examples involving a N -> O/S -> O mixed donor ligand such as 2-(ethylsulphinyl)pyridine A-oxide for transition metal ion and lanthanide metal ion as shown in Scheme 22. Crystal field parameters based on... [Pg.571]

Compared with esters, acid halides and anhydrides are more reactive and are hydrolyzed more readily. It is interesting to note that there is a substantial lifetime for these acid derivatives in aqueous media. Acid halides dissolved in PhCl or in PhBr shaken at a constant rate with water shows that hydrolysis occurs at the boundary between the two liquid phases.35 The reaction of benzoyl chloride (PhCOCl) and benzoate ion with pyridine A-oxide (PNO) as the inverse phase-transfer catalyst yields both the substitution product (benzoic anhydride) and the... [Pg.307]

Hexamethyldisilazane, Pyridine /V-oxide See Pyridine A-oxide Hexamethyldisilazane, etc. [Pg.1238]

Dioxo-ruthenium porphyrin (19) undergoes epoxidation.69 Alternatively, the complex (19) serves as the catalyst for epoxidation in the presence of pyridine A-oxide derivatives.61 It has been proposed that, under these conditions, a nms-A-oxide-coordinated (TMP)Ru(O) intermediate (20) is generated, and it rapidly epoxidizes olefins prior to its conversion to (19) (Scheme 8).61 In accordance with this proposal, the enantioselectivity of chiral dioxo ruthenium-catalyzed epoxidation is dependent on the oxidant used.55,61 In the iron porphyrin-catalyzed oxidation, an iron porphyrin-iodosylbenzene adduct has also been suggested as the active species.70... [Pg.214]

Pyridine A-oxides were converted to tetrazolo[l,5-a]pyridines 172 by heating in the presence sulfonyl or phosphoryl azides and pyridine in the absence of solvent <06JOC9540>. 3-R-5-Trinitromethyltetrazolo[l,5-a]-l,3,5-triazin-7-ones 173 have been prepared from the alkylation of 5-trinitromethyltetrazolo[l,5-a]-l,3,5-triazin-7-one silver salt with different alkylation agents <06CHE417>. The use of 2-fluorophenylisocyanide in the combinatorial Ugi-tetrazole reaction followed by a nucleophilic aromatic substitution afforded tricylic tetrazolo[l,5-a]quinoxaline 174 in good yields and with high diversity <06TL2041>. [Pg.234]

Both pyridinium salts and pyridine A-oxides are of increased interest as chiral catalysts in organic reactions. Connon and Yamada independently designed and examined pyridinium salts as chiral catalysts in the acylation of secondary alcohols <06OBC2785 06JOC6872>. These two catalysts can be used for kinetic resolution of various sec-alcohols and uf/-diols in good to moderate enantiomeric excess. [Pg.323]

Pyridine A-oxides have been utilized as asymmetric catalysts in the allylation of aldehydes <06JOC1458> and in the Strecker reaction <06T4071>. In the latter, the chiral A-oxides played a key role in the initial activation of the Si-C bond by coordinating an O atom to the Si atom of silyl cyanide and stabilizing the three-membered complex proposed by the... [Pg.323]

Pro-chiral pyridine A-oxides have also been used as substrates in asymmetric processes. Jprgensen and co-workers explored the catalytic asymmetric Mukaiyama aldol reaction between ketene silyl acetals 61 and pyridine A-oxide carboxaldehydes 62 <06CEJ3472>. The process is catalyzed by a copper(II)-bis(oxazoline) complex 63 which gave good yields and diastereoselectivities with up to 99% enantiomeric excess. [Pg.324]

Actinides activate pyridine A-oxides to yield cyclometallated products. This may open up new synthetic opportunities (Equation (82)).77... [Pg.127]

Both compounds were tested for their catalytic activity in asymmetric aziridination using p-toluenesullbnic anhydride (TS2O) to activate the nitridomanganese complex. As shown in Scheme 4-60, the aziridination generally gave poor results, while addition of pyridine A-oxide improved both the yield and the enantiomeric excess of the products. [Pg.256]

Intriguingly, the Stille coupling of quaternary pyridylstannane 12 with 2-chloropyrazine (13) proceeded to afford adduct 14 [12]. A-Methylated 3-(tributylstannyl)pyridine 12 was easily prepared by refluxing 3-(tributylstannyl)pyridine (11) with methyl tosylate in EtOAc. By contrast, only 29% yield of the coupling adduct was isolated from the Stille reaction of 3-(tributylstannyl)pyridine A-oxide and 13. [Pg.357]

These high field values occur also in nitrones such as Ph—N(0)=CH—Ph (at 377 ppm) and pyridine A-oxide (349 ppm). [Pg.315]


See other pages where Pyridine A-oxidation is mentioned: [Pg.141]    [Pg.469]    [Pg.234]    [Pg.137]    [Pg.280]    [Pg.280]    [Pg.142]    [Pg.196]    [Pg.251]    [Pg.40]    [Pg.248]    [Pg.283]    [Pg.257]    [Pg.189]    [Pg.1067]    [Pg.437]    [Pg.1453]    [Pg.322]    [Pg.324]    [Pg.324]    [Pg.324]    [Pg.32]    [Pg.257]    [Pg.257]    [Pg.257]    [Pg.257]    [Pg.257]    [Pg.900]    [Pg.56]    [Pg.56]   
See also in sourсe #XX -- [ Pg.73 ]




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2- pyridine, oxidative

Nitration of pyridine A-oxides

Pyridine A-oxides and pyridinium Salts

Pyridine oxide, oxidant

Pyridine-A-oxides

Pyridine-A-oxides

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