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Nitroacetate, ethyl

Substitutedisoxazole-3,5-dicarboxylic acids have been prepared from ethyl nitroacetate and an aldehyde (63BCJii50). A related reaction leads to diethyl 4-hydroxyisoxazole-3,5-dicarboxylate (334) and involves the reaction of acetonedicarboxylic acid ester (333) with nitrosyl chloride (78JHC1519). [Pg.85]

It was reported that the Niemeiitowski synthesis of 4-hydroxy-3-iiitro-7-pheiiyl-l,8-iiaphthyridiii-2(lH)-oiie (25) from ethyl 2-amiiio-6-pheiiyhii-cotiiiate (23) and ethyl nitroacetate (24) in the presence of sodium was unsuccessful, producing only traces of (25), while condensation of ethyl 2-amino-6-phenylnicotinate (23) with the less reactive ethyl acetate resulted in the formation of 4-hydroxy-7-phenyl-l,8-naphthyridin-2(lH)-one in good yield [66JCS(C)315]. It seems that the more reactive nitroacetate tends to precipitate rapidly from the reaction mixture as its sodio derivative, which explains the low yield of (25). [Pg.290]

A great number of N-substituted 4-hydroxy-3-nitro-l,8-naphthyridin-2 (IH)-ones are obtained by reaction of N-substituted azaisatoic anhydrides with ethyl nitroacetate carbanion (Section II,A,4,a). A very specific method, more recently developed, is that of the inverse Diels-Alder method, involving the reactions of enamines with 5-nitropyrimidine (Section II,A,4,b). [Pg.290]

The present tandem nitro aldol-cyclizadon process is used for the preparadon of the enandomerically pure 4-hydroxy-3-isoxa2olme-3-ones They are prepared starting from chiral ct-mesyloxy aldehydes and ethyl nitroacetate under rruld reacdon conthdons fEq 8 85 ... [Pg.270]

Aluminum oxide catalyzed addition of ethyl nitroacetate to racemic 2,3-cpoxy aldehydes 7 affords substituted 4,5-dihydroisoxazole 2-oxides through a regio- and stereospecific tandem nitroaldol cyclization process. High diastereoselectivities are observed in the reaction of cis-epoxyaldehydes to yield the ethyl, vi7 -4.5-dihydro-4-hydroxy-5-( I -hydroxyalkyl)-3-isoxazole-carboxylate 2-oxides, with tram configuration at the ring positions, whereas reactions of trans-and 3,3-disubstituted 2,3-epoxyaldehydes proceed with lower selectivities28. [Pg.633]

Methylamine Salt of Ethyl Nitroacetate, MeNH2.02NCH2C00Et, mw... [Pg.114]

The ethyl ester can also be prepared from ethyl acetoacetate (ethyl 3-oxobutanoate) by the method of Rodionov8 as well as via Steinkopf s method.3 Ethyl nitroacetate can be prepared in >70% yields from the dipotassium salt, ethanol, and sulfuric acid, with the addition of anhydrous magnesium sulfate in order to avoid the Nef reaction.9 The propyl and 2-propyl esters can also be obtained by this method. [Pg.79]

Thus, the reaction of alkyl halides and a-halo esters with sodium nitrite provides a very useful synthetic method for nitroalkanes and a-nitro esters. However, ethyl bromoacetate is exceptional in that it fails to give ethyl nitroacetate on treatment with sodium nitrite.93 This is due to the acidic hydrogen of the ethyl nitroacetate, which undergoes a further reaction with sodium nitrite to give the oxidized products (see Section 6.1, which discusses the Nef reaction). In a similar way, the reaction of benzyl bromide with sodium nitrite at 25 °C gives benzoic acid predominantly. To get phenylnitromethane, the reaction must be carried out at low temperature (-16 °C) (Eq. 2.48).93... [Pg.18]

Primary nitro ketones, ethyl nitroacetate, and (phenylsulfony l)nitromethane react with alkenes in the presence of Lewis acids to give nitrile oxide cycloaddition.61a Similarly, the reaction of a-nitro ketones with TeCl4 generates the corresponding nitrile oxides, as shown in Eq. 6.36.61b... [Pg.169]

Another approach to cyclic nitronates has been developed by Rosini et al. in which nitro-aldol and subsequent cyclization is used as a key step. For example, 2,3-epoxy aldehydes react with ethyl nitroacetate on alumina surface in the absence of solvent to give 4-hydroxyisoxazoline 2-oxides in good yields (Eq. 8.80).130... [Pg.268]

Treatment of 2-bromo aldehydes and ethyl nitroacetate with alumina gives 4-hydroxy-2-isoxazoline-2-oxides with high stereoselectivity (Eq. 8.81).131... [Pg.269]

One-pot multi-bond-forming reactions are one of the ways to address the ever growing demand for efficiency in organic synthesis. Rosini and coworkers have developed (tandem) processes for the synthesis of a highly functionalized tricyclic system. The reaction is simply performed by bringing together, at room temperature, a-bromo aldehydes, ethyl nitroacetate, and chlorodimethylvinylsilane in the presence of imidazole as the base (Eq. 8.83).134... [Pg.269]

This procedure has been applied successfully to the synthesis of other a-nitroesters from a-bromoesters,3 as listed below ethyl bromoacetate is exceptional in that it fails to give ethyl nitroacetate. [Pg.24]

Studies performed by Chinese researchers are of most interest in the context of the problem under consideration. In these studies, various alkylating agents were efficiently used in the synthesis of enantiomerically pure nitronates and ethyl nitroacetate derivatives (17) (Scheme 3.6, Eq. 5). [Pg.440]

The main starting compound is the labeled nitroguanidine 257 obtained from guanidine with isotope-labeled potassium nitrate. Reduction of 257 to hydrazine carboximidamide 258 was carried out with zinc and, then, ring closure to 3-amino[l,2,4]triazole 259 was carried out using formic acid. Finally, the ring closure to form the [l,2,4]triazine ring - similar to other procedures presented in Scheme 54 - was perfected by reaction with nitrous acid followed by treatment with ethyl nitroacetate to 260. [Pg.882]

However, this multistep procedure is experimentally complex. A simpler variation described in 199127 consists of the reaction of an aldehyde and a nitro compound in the presence of triethylamine, TBAF and tert-butyl-dimethylsilyl chloride. Under these conditions, nitro sugars are obtained in good yieds and higher diastereoselectivities than those afforded by the standard conditions. This procedure was used in several synthesis of 2-nitro-2-deoxyaldoses, as for the condensation of l,l-diethoxy-2-nitroethane and l,2 3,4-di-0-isopropylidene-a-D-galacto-hexodialdo-l,5-piranose.28 More recently, it was applied to the addition of ethyl nitroacetate to the D-glucose derived aldehyde 18, to give nitro sugar derivatives 26, key precursors of polysubstituted cyclohexane a-amino acids (Scheme 10).29... [Pg.176]

Scheme 30 Allylic alkylation with ethyl nitroacetate... Scheme 30 Allylic alkylation with ethyl nitroacetate...
Commercially available ethyl nitroacetate is an interesting pronucleophile, because it can serve as the synthetic equivalent of either nitromethane or glycine. The ethoxycarbonyl group can also be considered as a protecting group against dialkylation. The allylic alkylation with ethyl nitroacetate did not require an additional base (salt-free conditions). As a consequence of the high acidity of the chirality center a to N, 1 1 mixtures of epimers were formed. [Pg.225]

The utility of ethyl nitroacetate as the methylene component for cyclizing additions has been demonstrated with several dialdehydes. [Pg.204]

Similarly, o-phthalaldehyde is cyclized by ethyl nitroacetate to give 2-nitro-2-ethoxycarbonyl-indane-l,3-diol (86) in 71% yield, which can be hydrogenated to the corresponding amino acid (87)... [Pg.204]

Curiously, however, reaction of the dialdehyde (94b) with ethyl nitroacetate under practically identical conditions — aqueous ethanol in the presence of sodium acetate and sodium carbonate at pH 8.6 — takes a different course. The compound, isolated in 34% yield, constitutes a monoaddition product to one aldehyde group, as evidenced by the formation of a triacetate after hydrogenation and acetylation. It has been assigned structure (95) 5 ) and, as such, is a C-substituted derivative of the hemialdal form (94a) of the dialdehyde. Though some NMR data were cited as proof of this formulation 58) two alternatives, (96) and (97) respectively, cannot be ruled out. Of these, structure (97) derived from... [Pg.205]

An alternative to activating the nitro moiety by forming the nitronate salt is the activation of an oxygen leaving group under Mitsunobu conditions (Eq. 2.15) (155,156). Treatment of methanol with diethyl azodicarboxylate and triphenyl-phosphine in the presence of ethyl nitroacetate provides the nitronate 85 in good yield. Unfortunately, only methanol has been demonstrated to be compatible with this procedure. [Pg.132]


See other pages where Nitroacetate, ethyl is mentioned: [Pg.120]    [Pg.874]    [Pg.77]    [Pg.240]    [Pg.290]    [Pg.269]    [Pg.136]    [Pg.634]    [Pg.1143]    [Pg.7]    [Pg.851]    [Pg.202]    [Pg.190]    [Pg.191]    [Pg.203]    [Pg.205]    [Pg.208]    [Pg.7]    [Pg.161]    [Pg.369]    [Pg.173]    [Pg.189]    [Pg.217]   
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See also in sourсe #XX -- [ Pg.141 , Pg.169 ]

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See also in sourсe #XX -- [ Pg.54 ]

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See also in sourсe #XX -- [ Pg.159 ]

See also in sourсe #XX -- [ Pg.54 ]

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See also in sourсe #XX -- [ Pg.159 ]

See also in sourсe #XX -- [ Pg.54 ]

See also in sourсe #XX -- [ Pg.176 , Pg.262 ]

See also in sourсe #XX -- [ Pg.211 ]




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