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Electrochemical reduction of 5-halo-5-nitro-1,3-dioxanes and 2-halo-2-nitro-1,3-propanediols

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Abstract

The character of the first stage of reduction of 5-X-5-nitro-1,3-dioxanes 1—10 and 2-X-2-nitro-1,3-propanediols 11 and 12 is independent of the nature of halogen (X = Br, Cl) and substituents in position 2 of the dioxane cycle. The transfer of two electrons to a molecule of compound 1—12 is accompanied by the anionoid elimination of halogen and formation of the anion of nitronic acid. The high mobility of halogen is mainly due to the acceptor nitro group capable of further transformations in the α-position to halogen. The direction of further reduction involving the electron transfer to electrochemically active groups in the aromatic fragment of the molecule is determined by the nature of these groups. Chloro-, bromo-, and iodophenyl-substituted derivatives 4, 5, and 8—10 are reduced as typical halobenzenes. In the case of nitrophenyl-substituted compounds 3 and 7, the dioxane cycle opens to form dianions of p- and m-nitrobenzaldehydes along with the reduction of the nitroso group through the stages of formation of the radical anion and radical anion of the nitroso group. The radical anions of the nitro and nitroso derivatives were identified by ESR.

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References

  1. G. Ya. Legin, Khim.-Farm. Zh., 1996, No. 4, 54 [Pharm. Chem. J., 1996, No. 4 (Engl. Transl.)].

  2. C. K. Mann and K. K. Barnes, Electrochemical Reactions in Nonaqueous Systems, Marcel Dekker, Inc., New York, 1970, 560 pp.

    Google Scholar 

  3. D. M. Kukovitskii, V. V. Zorin, Yu. B. Zelechonok, S. S. Zlotskii, D. L. Rakhmankulov, and Z. V. Todres, Zh. Org. Khim., 1983, 19, 145 [J. Org. Chem. USSR, 1983, 19 (Engl. Transl.)].

    Google Scholar 

  4. E. A. Berdnikov, Doct. Sci. (Chem.) Thesis, Kazan State Univ., Kazan, 1988, 523 pp. (in Russian).

  5. H. Sajo, Y. Tsukitani, and M. Masui, Tetrahedron, 1968, 24, 1717.

    Google Scholar 

  6. Z. V. Todres, D. M. Kukovitskii, V. V. Zorin, S. S. Zlotskii, and D. L. Rakhmankulov, Izv. Akad. Nauk SSSR, Ser. Khim., 1981, 1577 [Bull. Acad. Sci. USSR, Div. Chem. Sci., 1981, 30 (Engl. Transl.)].

  7. D. L. Rakhmankulov, A. M. Syrkin, R. A. Karakhanov, E. A. Kantor, S. S. Zlotskii, and U. B. Imashev, Fiziko-khimicheskie svoistva 1,3-dioksanov [Physicochemical Properties of 1,3-Di-oxanes], Khimiya, Moscow, 1980, 240 pp. (in Russian).

    Google Scholar 

  8. V. V. Yanilkin, V. I. Morozov, F. F. Nigmadzyanov, T. V. Gryaznova, and A. M. Kibardin, Izv. Akad. Nauk, Ser. Khim., 1998, 1522 [Russ. Chem. Bull., 1998, 47, 1478 (Engl. Transl.)].

  9. A. V. Il´yasov, Yu. M. Kargin, and I. D. Morozova, Spektry EPR organicheskikh ion-radikalov [ESR Spectra of Organic Radical Ions], Nauka, Moscow, 1980, 168 pp. (in Russian).

    Google Scholar 

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Yanilkin, V.V., Bredikhina, Z.A., Maksimyuk, N.I. et al. Electrochemical reduction of 5-halo-5-nitro-1,3-dioxanes and 2-halo-2-nitro-1,3-propanediols. Russian Chemical Bulletin 51, 78–84 (2002). https://doi.org/10.1023/A:1015057612942

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  • DOI: https://doi.org/10.1023/A:1015057612942

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