Vol 60, No 2-3 (2024)

Articles

Oxidative Monofluorination of 1,4-Diiodo(or Dibromo)-2,3,5,6-tetramethylbenzenes in the System PbO₂—HF—Py—CH₂Cl₂

Kalyaev M.V., Ryabukhin D.S., Vasilyev A.V.

Abstract

The oxidation of 1,4-diiodo-2,3,5,6-tetramethylbenzene (diiododurene) and 1,4-dibromo-2,3,5,6-tetramethylbenzene (dibromodurene) by lead dioxide PbO₂ in Olah reagent, hydrogen fluoride-pyridine mixture, with CH₂Cl₂ as a co-solvent at room temperature for 96 h results in the corresponding products of monofluorination of methyl group. This is the first example of using the oxidative system PbO₂—HF—Py—CH₂Cl₂ for side-chain monofluorination of methylated benzenes.

Russian Journal of Organic Chemistry. 2024;60(2-3):146–150
pages 146–150 views

Reaction of 4-Hydroxyspiro[pyrrole-2,3′-pyrrole] and 4′-Hydroxyspiro[imidazole-5,2′-pyrrole] Derivatives with Dicyclohexylcarbodiimide

Maslivets A.N., Lystsova E.A., Khramtsova E.E.

Abstract

The reaction of substituted 4-hydroxyspiro[pyrrole-2,3′-pyrrole] and 4′-hydroxyspiro[imidazole-5,2′-pyrrole] with dicyclohexylcarbodiimide leads to the corresponding derivatives of 4-ureidospiro[pyrrole-2,3′-pyrrole] and 4′-ureidospiro[imidazole-5,2′-pyrrole]. The thermal decomposition of the obtained ureidospirobisheterocycles proceeds nonselectively.

Russian Journal of Organic Chemistry. 2024;60(2-3):151–161
pages 151–161 views

Synthesis of Spiro[indole-3,2′-pyrrole]triones by the Reaction of Pyrrolobenzoxazepinetriones with Enaminoketone

Maslivets A.A., Dmitriev M.V., Maslivets A.N.

Abstract

The reaction of 3-aroylpyrrolo[1,2-a][4,1]benzoxazepin-1,2,4-triones with 3-cyclohexylamino-5,5-dimethylcyclohex-2-en-1-one leads to the formation of 3′-(4-aroyl)-4′-hydroxy-1′-(2-(hydroxymethyl)phenyl)-6,6-dimethyl-1-cyclohexyl-6,7-dihydrospiro[indole-3,2′-pyrrole]-2,4,5′(1H,1′H,5H)-triones. A new scheme for the interaction of 3-aroylpyrrolo[1,2-а][4,1]benzoxazepine-1,2,4-triones with N-substituted enaminoketones leading to the formation of derivatives of the difficult-to-reach heterocyclic systems of spiro[indole-3,2′-pyrrole]triones is described.

Russian Journal of Organic Chemistry. 2024;60(2-3):162–166
pages 162–166 views

Reaction of Tetrahydropyrimidine-2(1H)-thione Derivatives with Thiolated Acid Hydrazides as a Method of Synthesis of Biologically Active Ligands of Gold Glyco-Nanoparticles

Ershov A.Y., Lagoda I.V., Martynenkov A.A., Batyrenko A.A.

Abstract

The reaction of 4-hydroxy-1-phenyl-6-methyltetrahydropyrimidine-2(1H)-thione with 6-mercaptohexanoic and lipoic (thioctic) acids hydrazides in yields of 60–75% to form 4-[ω-(mercaptoacyl)hydrazino]-tetrahydropyrimidine-2(1H)-thiones as a promising сo-ligands for the preparation of gold glyco-nanoparticles for biomedical purposes.

 

Russian Journal of Organic Chemistry. 2024;60(2-3):167–169
pages 167–169 views

Organic Chemistry in Russian Universities: Achievements of recent years

Stoykov I.I., Antipin I.S., Burilov V.A., Kurbangalieva A.R., Rostovsky N.V., Pankova A.S., Balova I.A., Remizov Y.O., Pevzner L.M., Petrov M.L., Vasily A.V., Averin A.D., Beletskaya I.P., Nenaydenko V.G., Beloglazkina E.K., Gromov S.P., Karlov S.S., Magdesieva T.V., Prishchenko A.A., Popkov S.V., Terentyev A.O., Tsaplin G.V., Kustova T.P., Kochetova L.B., Magdalinova N.A., Krasnokutskaya E.A., Nyuchev A.V., Kuznetsova Y.L., Fedorov A.Y., Egorova A.Y., Grinev V.S., Sorokin V.V., Ovchinnikov K.L., Kofanov E.R., Kolobov A.V., Rusinov V.L., Zyryanov G.V., Nosov E.V., Bakulev V.A., Belskaya N.P., Berezkina T.V., Obydennov D.L., Sosnovskikh V.Y., Bakhtin S.G., Baranova O.V., Doroshkevich V.S., Raskildina G.Z., Sultanova R.M., Zlotskiy S.S., Dyachenko V.D., Dyachenko I.V., Fisyuk A.S., Konshin V.V., Dotsenko V.V., Ivleva E.A., Reznikov A.N., Klimochkin Y.N., Aksenov D.A., Aksenov N.A., Aksenov A.V., Burmistrov V.V., Butov G.M., Novakov I.A., Shikhaliev K.S., Stolpovskaya N.V., Medvedev S.M., Kandalintseva N.V., Prosenko O. ., Menshchikova E.B., Golovanov A.A., Khashirova S.Y.

Abstract

An overview of the main scientific achievements of Russian universities in the field of organic chemistry for the period 2018–2023 is presented.

Russian Journal of Organic Chemistry. 2024;60(2-3):170–396
pages 170–396 views

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