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Alkylations nitrogen acids, sodium hydride

Nitrogen Acids. Sodium hydride can be used to achieve selective tV-alkylation of 2-hydroxycarbazole (eq 36). ... [Pg.441]

Acyl amino acids and peptides may be alkylated on nitrogen using sodium hydride, with noracemization (eq 9). A slight change of reaction conditions allows simultaneous esterification. ... [Pg.438]

The imide proton N-3—H is more acidic than N-1—H and hence this position is more reactive toward electrophiles in a basic medium. Thus hydantoins can be selectively monoalkylated at N-3 by treatment with alkyl haUdes in the presence of alkoxides (2,4). The mono-A/-substituted derivatives (5) can be alkylated at N-1 under harsher conditions, involving the use of sodium hydride in dimethylform amide (35) to yield derivatives (6). Preparation of N-1 monoalkylated derivatives requires previous protection of the imide nitrogen as an aminomethyl derivative (36). Hydantoins with an increased acidity at N-1—H, such as 5-arylmethylene derivatives, can be easily monoalkylated at N-3, but dialkylation is also possible under mild conditions. [Pg.250]

Of the several syntheses available for the phenothiazine ring system, perhaps the simplest is the sulfuration reaction. This consists of treating the corresponding diphenylamine with a mixture of sulfur and iodine to afford directly the desired heterocycle. Since the proton on the nitrogen of the resultant molecule is but weakly acidic, strong bases are required to form the corresponding anion in order to carry out subsequent alkylation reactions. In practice such diverse bases as ethylmagnesium bromide, sodium amide, and sodium hydride have all been used. Alkylation with (chloroethyl)diethylamine affords diethazine (1), a compound that exhibits both antihista-minic and antiParkinsonian activity. Substitution of w-(2-chloroethyl)pyrrolidine in this sequence leads to pyrathiazine (2), an antihistamine of moderate potency. [Pg.373]

Inclusion of basic nitrogen in the p-position is also compatible with antiinflammatory activity in this series. Nitration of phenylacetic acid (27) affords 28. Methyl iodide alkylation of the enolate prepared from 28 using two equivalents of sodium hydride gives 29. This appears to involve an Ivanov intermediate (28a). Catalytic reduction of the... [Pg.68]

The key sequence in a somewhat involved stereospecihc total synthesis of a carbacephem starts by preparation of a chiral auxiliary. It is interesting to note that nitrogen is the only atom from this molecule retained in the hnal product. Constmction of this moiety starts with the formation of the carbethoxy derivative (37-2) from L(- -)-phenylglycine (37-1). Selective reduction of the free carboxyl group with borane. THF leads to the hydroxycarbamate (37-3). In a one-pot sequence, this is first cyclized to the corresponding oxazolidinone (37-4) by means of sodium hydride and then alkylated with ethyl bromoacetate (37-5). Saponification of the side chain then affords the chiral acetic acid (37-6). The carboxyl group is then activated by conversion to its acid chloride (37-7). [Pg.570]

The highly substituted indole, ecopladib (82), which shares many structural elements with the phospholipase inhibitor varespladib (37), shows similar biological activity. Alkylation of hydroxy benzoate (72) with the dimethyl acetal from bromoacetaldehyde (73) affords the ether (74). Acid-catalyzed reaction of this intermediate with 2-methyl-5-chloroindole (75) in the presence of triethylsilane leads in effect to condensation of the acetal with the activated 3 position on the indole ring to afford 76. The nature of the reduction of the aldehyde carbon is not immediately apparent. Alkylation of the anion on nitrogen from reaction of the indole with sodium hydride and bromodiphenylmethane then adds the third... [Pg.147]

The pA a for loss of the A -hydrogen of imidazole is 14.2 it is thus an appreciably stronger acid than pyrrole (pATa 17.5) because of the enhanced delocalisation of charge, involving both nitrogens in the imidazolyl anion. Salts of imidazoles can be alkylated or acylated on nitrogen. One convenient method is to use the dry sodium/potassium salt obtained by evaporation of an aqueous alkaline solution sodium hydride in dimethylformamide also serves very well for this purpose. [Pg.467]

An interesting example of substrate control was also achieved in the rearrangement of ammonium salt 30 (Scheme 17.8). As part of a program to develop novel antibiotics, it was of interest to alkylate the C3 position of the lactam ring in penicillin derivatives while maintaining the cis stereochemistry between the nitrogen and sulfur moieties. Toward this end, amine 29, which is available from A7,A7-dimethylaminopenicillanic acid hydrochloride, was quatemized with allyl bromide to afford compound 30. When this material was treated with sodium hydride at... [Pg.479]

Piperideines unsubstituted at the nitrogen atom may be prepared from the corresponding pyridine compounds by partial reduction with sodium and boiling alcohols (the Ladenburg reduction), by electrolytic reduction, or, preferably, by reduction with aluminum hydride. l-Alkyl-3-piperideines are prepared by reduction of quaternary pyridinium salts with formic acid (the Lukes reduction) or with complex hydrides. [Pg.59]


See other pages where Alkylations nitrogen acids, sodium hydride is mentioned: [Pg.89]    [Pg.124]    [Pg.273]    [Pg.299]    [Pg.27]    [Pg.292]    [Pg.226]    [Pg.255]    [Pg.461]    [Pg.467]    [Pg.635]    [Pg.146]    [Pg.635]    [Pg.237]    [Pg.13]    [Pg.124]    [Pg.87]    [Pg.145]    [Pg.158]    [Pg.635]    [Pg.143]    [Pg.582]    [Pg.382]    [Pg.232]    [Pg.837]    [Pg.57]    [Pg.278]    [Pg.124]    [Pg.714]    [Pg.124]    [Pg.133]    [Pg.46]    [Pg.78]    [Pg.81]    [Pg.82]    [Pg.113]    [Pg.127]    [Pg.150]    [Pg.150]   
See also in sourсe #XX -- [ Pg.39 , Pg.438 ]




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Alkylation nitrogen

Hydride acidity

Nitrogen acids

Nitrogen acids, sodium hydride

Nitrogen hydrides

Sodium acids

Sodium hydride

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