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Vol 52, No 5 (2016)

Article

Effect of chalcogenyl substituent on the course of allyl rearrangement at chalcogenation of 1,3-dichloropropene

Levanova E.P., Nikonova V.S., Grabel’nykh V.A., Russavskaya N.V., Albanov A.I., Rozentsveig I.B., Korchevin N.A.

Abstract

Formation of 1,3-dichalcogenylpropene at the treatment of 1,3-dichloropropene with organic dichalcogenides in a redox system hydrazine hydrate–KOH is governed by the possibility of an allyl rearrangement. In the presence of bases this rearrangement proceeds via carbanion partially stabilized by the chalcogenyl substituent. The effectivity of the stabilization and consequently the probability of the rearrangement varies in the series of substituents PhS > BnS > PhSe. In the stage of the direct nucleophilic substitution of chlorine the anion PhSe possesses the highest activity.

Russian Journal of Organic Chemistry. 2016;52(5):615-623
pages 615-623 views

Oxidation and halogenation of divinyl selenide. first synthesis of divinyl selenoxide

Kurkutov E.O., Potapov V.A., Amosova S.V.

Abstract

Efficient procedure was developed for the preparation of divinyl selenoxide in 92% yield by oxidation of divinyl selenide with sodium periodate. At the action of S-nucleophiles on the divinyl selenoxide it is reduced to divinyl selenide. The reaction of divinyl selenide with an equimolar amount of sulfuryl chloride or bromine led to halogenation products at the selenium atom: divinylselenium dichloride and divinylselenium dibromide. A rearrangement was discovered of divinylselenium dibromide into vinyl(1,2-dibromoethyl)-selenide. The hydrolysis of divinylselenium dichloride results in divinyl selenide.

Russian Journal of Organic Chemistry. 2016;52(5):624-627
pages 624-627 views

Stereoselective synthesis of tetrahydropyran new derivatives underlain by α-allyl ketones

Boev V.I., Moskalenko A.I., Belopukhov S.L., Nikonova G.N.

Abstract

Decarboxylation of α-allyl-substituted acetoacetic esters afforded α-allyl ketones that were reduced with L-selectride [LiBH(s-Bu)3] in alcohols RCH(OH)CH2CH2CH=C(Me)CH2R'. The latter reacted with methyl 4-hydroxy-3-formylbenzoate and methyl orthoformate in the presence of p-toluenesulfonic acid to provide trans-tetrahydropyrano[3,2-с][1]benzopyran. In reaction of the E-isomer of alcohol Me2CHCH(OH) CH2CH2CH=C(Me)CH2CH2Ph with CF3SO3H a stereoselective cyclization occurred with the formation of 2,6-disubstituted tetrahydropyran; Prins reaction with 4-bromobenzaldehyde and salicylaldehyde in the presence of boron trifluoride etherate also proceeded stereoselectively giving a substituted tetrahydropyrano-[3,2-c][1]-benzopyran.

Russian Journal of Organic Chemistry. 2016;52(5):628-635
pages 628-635 views

Reaction of 3,4-dioxohexane-1,6-dioic acid esters with 2,4-dinitrophenylhydrazine

Mukovoz P.P., Koz’minykh V.O., Slepukhin P.A., Ganebnykh I.N., El’tsov O.S., Gorbunova A.V., Koz’minykh E.N.

Abstract

Reaction was studied of 3,4-dihydroxyhexa-2,4-diene-1,6-dioic acid esters with 2,4-dinitrophenylhydrazine that led to the formation of esters of (3E)-3-[2-(2,4-dinitrophenyl)-hydrazinylidene]-4-oxohexane-1,6-dioic and (3E,4E)-3,4-bis[2-(2,4-dinitrophenyl)hydrazinylidene]-hexane-1,6-dioic acids. The structural features of compounds synthesized were established from the data of IR and NMR spectra and X-ray diffraction (XRD) analysis.

Russian Journal of Organic Chemistry. 2016;52(5):636-643
pages 636-643 views

Reaction of N-sulfonyl derivatives of 1,4-benzoquinone monoimine with substituted hydrazines

Konovalova S.A., Avdeenko A.P., Goncharova S.A., D’yakonenko V.V., Shishkina S.V.

Abstract

Reaction direction of N-sulfonyl derivatives of 1,4-benzoquinone monoimine with substituted hydrazines depends on the redox potential of the quinone imine and on the basicity of the hydrazine. Aryl (alkyl)hydrazines of high basicity favor the reduction of quinone monoimine. In reactions with less basic aroylhydrazones N'-(4-oxocyclohexa-2,5-dienylidene)aroylhydrazides were obtained only from the alkylsubstituted in the quinoid ring N-sulfonyl derivatives possessing a lower redox potential.

Russian Journal of Organic Chemistry. 2016;52(5):644-649
pages 644-649 views

Synthesis of substituted 3-[(4-oxocyclohexa-2,5-dien-1-ylidene)-hydrazinylidene]-1,3-dihydro-2H-indol-2-ones and their reactions with hydrogen chloride

Murashevich B.V., Nichik N.A., Zamyatina A.K., Toropin N.V., Burmistrov K.S.

Abstract

4-Hydroxyphenylhydrazones of isatin derivatives were synthesized and oxidized with lead compounds to the corresponding azines. The introduction of isatin fragment in a quinoid system increases the redox potential of the system compared with 1,4-benzoquinone thus presumably resulting in the prevalence of 1,4-addition process. By an example of the reaction of N-methylisatins with hydrogen chloride it was shown that the reaction proceeded in keeping with the theoretically predicted direction. Azines, derivatives of isatin unsubstituted at the nitrogen atom, do not react with hydrogen chloride because of the presence of a strong intramolecular hydrogen bond.

Russian Journal of Organic Chemistry. 2016;52(5):650-654
pages 650-654 views

Synthesis of 1-substituted 5-alkyl(aryl)-1,3-dihydro-2H-pyrrol-2-ones. Azocoupling with diazonium salts

Grinev V.S., Amal’chieva O.A., Egorova A.Y.

Abstract

Reactions of 5-alkyl- and 5-aryl-3H-furan-2-ones with 1,3- and 1,4-binucleophiles of aromatic series were carried out for the first time under various conditions. In the presence of a base the reaction resulted in 1-R-1,3-dihydro-2Н-pyrrol-2-ones, under milder conditions intermediates were isolated, 4-aryl-4-oxobutanamides. The structure of the latter was proved by spectral methods. By an example of 1-R-1,3-dihydro-2Н-pyrrol-2-ones the possibility was demonstrated of their functionalization via introducing an aryldiazenyl fragment.

Russian Journal of Organic Chemistry. 2016;52(5):655-660
pages 655-660 views

Reactivity of 5-endo-hydroxy-4-azatricyclo[5.2.1.02,6]dec-8-en-3-ones and their isomerization initiated by acids and bases

Tkachenko I.V., Tarabara I.N., Omel’chenko I.V., Pal’chikov V.A.

Abstract

Study of isomerization of 5-endo-hydroxy-4-azatricyclo[5.2.1.02,6]dec-8-en-3-ones under the action of Lewis acids (MgBr2, AlCl3), CF3COOH, and NaH showed that the optimum catalyst of the process was trifluoroacetic acid. In reaction of 4-benzyl-5-endo-hydroxy-4-azatricyclo-[5.2.1.02,6]dec-8-en-3-one with anhydrous AlCl3 in benzene was unexpectedly isolated N-benzyl-3-(diphenylmethyl)bicyclo[2.2.1]hept-5-ene-2-carboxamide. A convenient method was developed for the preparation of 5-exo-alkoxy-4-alkyl(aryl)-4-azatricyclo[5.2.1.02,6]dec- 8-en-3-ones.

Russian Journal of Organic Chemistry. 2016;52(5):661-669
pages 661-669 views

New chiral block for cyclopentanoids synthesis

Gimazetdinov A.M., Almukhametov V.Z., Loza V.V., Miftakhov M.S.

Abstract

Hydroxymethylation of bicyclic allylsilane, (3aR,6R,6aS)-3,3a,6,6a-tetrahydro-6-(trimethylsilyl)-cyclopenta[c]furan-1-one with formaldehyde by Prins reaction proceeds via SE2' mechanism with the formation of anti-addition product. Some reactions of obtained (3aS,4S,6aR)-4-(hydroxymethyl)-3,3a,4,6a-tetrahydro-1H-cyclopenta[c]furan-1-one were investigated.

Russian Journal of Organic Chemistry. 2016;52(5):670-675
pages 670-675 views

Synthesis of 2-amino-5-(2-aryl-2-oxoethylidene)-4-oxo-1H-4,5-dihydrofuran-3-carboxylic acids derivatives by recyclization of 5-arylfuran-2,3-diones under the action of cyanoacetic acid derivatives

Ivanov D.V., Igidov N.M., Rubtsov A.E.

Abstract

Recyclization of 5-arylfuran-2,3-diones under the action of ethyl cyanoacetate or of malonic acid dinitrile resulting in the corresponding esters or nitriles of 2-amino-5-(2-aryl-2-oxoethylidene)-4-oxo-1Н-4,5-dihydrofuran-3-carboxylic acids was investigated.

Russian Journal of Organic Chemistry. 2016;52(5):676-681
pages 676-681 views

Synthesis and transformations of 5,5-disubstituted 3-alkenyloxolan-2-ones

Kochikyan T.V., Samvelyan M.A., Galstyan A.S., Muzalevskii V.M., Nenaidenko V.G.

Abstract

By alkylation of 4,4-disubstituted 2-(ethoxycarbonyl)butanolides new 4,4-disubstituted 2-alkenyl-2-(ethoxycarbonyl)butanolides were synthesized, which at alkaline hydrolysis formed 4,4-disubstituted 2-alkenylbutanolides. By oxidation of the latter with hydrogen peroxide and formic acid diololactones were obtained that in conditions of pinacol-pinacolone rearrangement and oxidation with lead tetraacetate afforded formyl- and epoxybutanolides of new structure.

Russian Journal of Organic Chemistry. 2016;52(5):682-688
pages 682-688 views

Synthesis of new substituted acetamide derivatives of 6′,7′-dimethoxy-2′,3′-dihydro-1′H-spiro[isoquinoline-1,4′-cyclopentane]-1′-carboxamide

Aghekyan A.A., Panosyan G.A.

Abstract

Reaction of ethyl 6′,7′-dimethoxy-3′Н-spiro[isoquinoline-1,4′-cyclopentane]-1′-carboxylate with ammonia and isopropylamine afforded dihydroisoquinoline carboxamides that were reduced with NaBH4 in amides of 6,7-dimethoxy-4-spirocyclopentane-1,2,3,4-tetrahydroisoquinoline-1-carboxylic acid. The reaction of unsubstituted carboxamide with chloroacetyl chloride led to chloroamide that reacted with versatile secondary amines and heterylthiols providing the corresponding substituted amino- and sulfanylamides of tetrahydroisoquinoline series.

Russian Journal of Organic Chemistry. 2016;52(5):689-693
pages 689-693 views

Aldehydes of furan series in the synthesis of 1,7-phenanthroline derivatives

Kozlov N.G., Tereshko A.B.

Abstract

By condensation of quinolin-5-amine with 5-arylfuran-2-carbaldehydes and cyclohexane-1,3-dione or dimedone new compounds were synthesized, 10,10-dimethyl-7-(5-arylfuran-2-yl)-9,10,11,12-tetrahydrobenzo[b][1,7]phenanthrolin-8(7H)-ones unsubstituted in the position 10.

Russian Journal of Organic Chemistry. 2016;52(5):694-700
pages 694-700 views

Modified Hantzsch reaction in the presence of chiral organic catalysts

Magerramov A.M., Guseinov E.Z., Akhmedov I.M., Tanyeli D., Kurbanova M.M.

Abstract

Modified Hantzsch reaction in three- and four-component system in the presence of new chiral organic catalysts was investigated and the advantages of this reaction in three-component system compared to four-component one were demonstrated, the influence of catalysts on the dynamics and stereochemistry of the reaction was elucidated. The enantiomeric excess of the main reaction product was evaluated with HPLC, its structure was proved by X-ray diffraction analysis.

Russian Journal of Organic Chemistry. 2016;52(5):701-705
pages 701-705 views

Spirobisheterocyclization of 5-(Methoxycarbonyl)-1H-pyrrol-2,3-diones by the action of enaminoesters. Crystal and molecular structure of 1,7-diazaspiro[4.4]nonane

Dubovtsev A.Y., Denislamova E.S., Dmitriev M.V., Maslivets A.N.

Abstract

1-Aryl-4-aroyl-5-(methoxycarbonyl)-1Н-pyrrole-2,3-diones react with methyl 4-aryl-2-(arylamino)-4-oxobut-2-enoates with the formation of methyl 1,7-diaryl-4,9-diaroyl-3-hydroxy-2,6-dioxo-1,7-diazaspiro[4.4]nona-3,8-diene-8-carboxylates.

Russian Journal of Organic Chemistry. 2016;52(5):706-710
pages 706-710 views

Oxidation with CrO3·2Py of levoglucosenone and 1,3-dienes Diels-Alder adducts

Biktagirov I.M., Faizullina L.K., Salikhov S.M., Galin F.Z., Safarov M.G., Valeev F.A.

Abstract

Diels-Alder adducts of levoglucosenone with 1,3-butadiene, piperylene, and isoprene, and also some of their derivatives undergo allylic oxidation with CrО3·2Py only in the case when the effect of a keto group or of another electron-acceptor group in the γ-position with respect to the double bond is removed.

Russian Journal of Organic Chemistry. 2016;52(5):711-720
pages 711-720 views

Eleuthesides and their analogs: XI. Final stage of the synthesis of sarcodictyin A analog with 14-methylcyclohex-12-ene ring A

Sharipov B.T., Pershin A.A., Salikhov S.M., Valeev F.A.

Abstract

Proceeding from derivatives of levoglucosenone and piperilene Diels–Alder adduct a total chemical synthesis was completed of sarcodictyin A analog possessing a 14-methylcyclohex-12-ene ring А. A practical version was developed of N(τ)-methylation of urocanic acid.

Russian Journal of Organic Chemistry. 2016;52(5):721-726
pages 721-726 views

Preparation and reactivity of 2-(furan-2-yl)acenaphtho[1,2-d]oxazole

Alexandrov A.A., Prorervo E.A., El’chaninov M.M.

Abstract

Reaction of acenaphthylene-1,2-dione and furan-2-carbaldehyde in ethanol with an excess of ammonia water solution afforded 2-(furan-2-yl)acenaphtho[1,2-d]oxazole whose reactions of electrophilic substitution (nitration, bromination, hydroxymethylation, formylation, acylation) were examined. Notwithstanding the reaction conditions the electrophilic attack was directed on the furan ring.

Russian Journal of Organic Chemistry. 2016;52(5):727-729
pages 727-729 views

Synthesis of diethyl 6-aryl-2-oxo-1,2,3,6-tetrahydropyrimidine-4,5-dicarboxylates

Gein V.L., Zamaraeva T.M., Volkova E.S., Dmitriev M.V.

Abstract

Reaction of diethyl oxalylacetate sodium salt with aromatic aldehydes and urea led to the formation of diethyl 6-aryl-2-oxo-1,2,3,6-tetrahydropyrimidine-4,5-dicarboxylates.

Russian Journal of Organic Chemistry. 2016;52(5):730-733
pages 730-733 views

Synthesis, structure, and biologic activity of products of reactions between dinitrodichlorobenzofuroxane and aminopyrimidines in aqueous dimethyl sulfoxide

Galkina I.V., Yusupova L.M., Gubaidullin A.T., Galkin V.I.

Abstract

Reactions of 4,6-dinitro-5,7-dichlorobenzofuroxane with substituted pyrimidines in aqueous DMSO proceed through an intermediate formation of 5-hydroxy-4,6-dinitro-7-chlorobenzofuroxane owing to the hydrolysis of one of the chlorine atoms with the subsequent formation of pyrimidine salts exhibiting a high biologic action.

Russian Journal of Organic Chemistry. 2016;52(5):734-739
pages 734-739 views

Synthesis of diazahomoadamantanones thiosemicarbazones

Alasadi R.T., Razenko I.O., Burakov V.V., Proshin A.N., Serova T.M., Kuznetsov A.I.

Abstract

Thiosemicarbazones of ketones from 3,6-diazahomoadamantane series were prepared by two procedures: by treating 3,6-diazahomoadamantan-9-ones with thiosemicarbazide and by a reaction of substituted (3,6-diazahomoadamantan-9-ylidene)hydrazines with versatile isothiocyanates.

Russian Journal of Organic Chemistry. 2016;52(5):740-744
pages 740-744 views

Fused pyrimidine systems: XVI. Electrophilic intramolecular cyclization of 2-(alkenylsulfanyl)pteridin-4(3H)-ones

Dyachenko I.V., Vas’kevich R.I., Vas’kevich A.I., Shishkina S.V., Vovk M.V.

Abstract

2-[Allyl(but-3-en-1-yl, pent-4-en-1-yl)sulfanyl]pteridin-4(3Н)-ones at heating in polyphosphoric acid undergo an intramolecular cyclization affording respectively 9-methyl-8,9-dihydro-5H-[1,3]thiazolo[3,2-a] pteridin-5-one and 10-methyl(ethyl)-9,10-dihydro-5Н,8Н-[1,3]thiazino[3,2-a]pteridin-5-ones of angular structure. The cyclization of 2-(alkenylsulfanyl)pteridin-4(3Н)-ones under the action of iodine or arylsulfenyl chlorides afforded iodo(arylsulfanyl) derivatives of angularly fuzed thiazolo- and thiazinopteridines.

Russian Journal of Organic Chemistry. 2016;52(5):745-752
pages 745-752 views

Short Communications

Synthesis of 2-(hydroxyethyl)mercapturic acid from p-acetylcysteine and 2-bromoethanol

Rozentsveig I.B., Kondrashov E.V., Serykh V.Y., Zhurba O.M., Alekseenko A.N.
Russian Journal of Organic Chemistry. 2016;52(5):753-754
pages 753-754 views

Stereospecific synthesis of cis-verbenol

Ishmuratov G.Y., Tukhvatshin V.S., Yakovleva M.P., Talipov R.F.
Russian Journal of Organic Chemistry. 2016;52(5):755-756
pages 755-756 views

Improved synthesis of optically active ipsdienol

Kovalenko V.N., Prokhorevich K.N.
Russian Journal of Organic Chemistry. 2016;52(5):757-758
pages 757-758 views

Selective reduction of C=C bond in iminolactone ring by a system magnesium–methanol

Tokmadzhyan G.G., Karapetyan L.V.
Russian Journal of Organic Chemistry. 2016;52(5):759-761
pages 759-761 views

5-(Arylmethylidene)-2,4,6-pyrimidine-2,4,6(1H,3H,5H)-triones in reaction with p-phenacyl- and p-acetonylisoquinolinium bromides

Tyrkov A.G., Nosachev S.B., Vladimirova T.S.
Russian Journal of Organic Chemistry. 2016;52(5):762-765
pages 762-765 views