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Reactions of naphthalen-2-ol Mannich bases with β-aminoacrylonitriles and methyl 3-morpholinoacrylate

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Chemistry of Heterocyclic Compounds Aims and scope

3-Amino-2,3-dihydro-1H-benzo[f]chromenes and 2-[(2-hydroxynaphthalen-1-yl)methyl]-2,3-dihydro-1H-benzo[f]chromene-2-carbonitriles were obtained via the reaction of naphthalen-2-ol Mannich bases with β-aminoacrylonitriles and methyl 3-morpholinoacrylate as products of [4+2] cycloaddition of push-pull olefins to the corresponding 1,2-naphthoquinone 1-methide. The reaction of 3-amino-3-phenylacrylonitrile with Mannich bases leads to the formation of 1,4-dihydropyridine-3,5-dicarbonitriles.

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References

  1. Džambaski, Z.; Baranac-Stojanović, M. ChemistrySelect2017, 2, 42.

    Article  Google Scholar 

  2. (a) Erian, A. W. Chem. Rev.1993, 93, 1991. (b) Stanovnik, B.; Svete, J. Chem. Rev.2004, 104, 2433. (c) Dar’in, D. V.; Lobanov, P. S. Russ. Chem. Rev.2015, 84, 601. [Usp. Khim.2015, 84, 601.] (d) Riyadh, S. M.; Abdelhamid, I. A.; Al-Matar, H. M.; Hilmy, N. M.; Elnagdi, M. H. Heterocycles2008, 75, 1849. d Abu-Shanab, F. A.; Sherif, S. M.; Mousa, S. A. S. J. Heterocycl. Chem.2009, 46, 801. e Kostyuk, A. N.; Volochnyuk, D. M.; Sibgatulin, D. A. Synthesis2008, 161. f Gaber, H. M.; Bagley, M. C.; Muhammad, Z. A.; Gomha, S. M. RSC Adv.2017, 7, 14562. g Govindh, B.; Diwakar, B. S.; Murthy, Y. L. N. Org. Commun.2012, 5, 105. h Bondock, S.; Abd El-Gaber, T.; Fadda, A. A. Curr. Org. Chem.2011, 15, 753. i Dotsenko, V. V.; Frolov, K. A.; Chigorina, E. A.; Khrustaleva, A. N.; Bibik, E. Yu.; Krivokolysko, S. G. Russ. Chem. Bull., Int. Ed.2019, 68, 691. [Izv. Akad. Nauk, Ser. Khim.2019, 691.]

  3. (a) Lukashenko, A. V.; Osyanin, V. A.; Osipov, D. V.; Klimochkin, Yu. N. J. Org. Chem.2017, 82, 1517. (b) Lukashenko, A. V.; Osipov, D. V.; Osyanin, V. A.; Klimochkin, Yu. N. Russ. J. Org. Chem.2016, 52, 1817. [Zh. Org. Khim.2016, 52, 1824.] (c) Lukashenko, A. V.; Osyanin, V. A.; Osipov, D. V.; Klimochkin, Yu. N. Chem. Heterocycl. Compd.2016, 52, 711. [Khim. Geterotsikl. Soedin.2016, 52, 711.] (d) Korzhenko, K. S.; Osipov, D. V.; Osyanin, V. A.; Krasnikov, P. E.; Klimochkin, Yu. N. Chem. Heterocycl. Compd.2018, 54, 940. [Khim. Geterotsikl. Soedin.2018, 54, 940.] (e) Osyanin, V. A.; Lukashenko, A. V.; Osipov, D. V.; Klimochkin, Yu. N. Chem. Heterocycl. Compd.2015, 50, 1528. [Khim. Geterotsikl. Soedin.2014, 1663.] (f) Osyanin, V. A.; Osipov, D. V.; Borisov, D. D.; Klimochkin, Yu. N. Chem. Heterocycl. Compd.2013, 49, 683. [Khim. Geterotsikl. Soedin.2013, 732.]

  4. (a) Osipov, D. V.; Osyanin, V. A.; Klimochkin, Yu. N. Russ. Chem. Rev.2017, 86, 625. [Usp. Khim.2017, 86, 625.] (b) Barta, P.; Fülöp, F.; Szatmári, I. Beilstein J. Org. Chem.2018, 14, 560.

  5. Ferreira, S. B.; da Silva, F. C.; Pinto, A. C.; Gonzaga, D. T. G., Ferreira, V. F. J. Heterocycl. Chem.2009, 46, 1080.

    Article  CAS  Google Scholar 

  6. (a) Aho, J. E.; Pihko, P. M.; Rissa, T. K. Chem. Rev.2005, 105, 4406. (b) Pratap, R.; Ram, V. J. Chem. Rev.2014, 114, 10476. (c) Costa, M.; Dias, T. A.; Brito, A.; Proenca, F. Eur. J. Med. Chem.2016, 123, 487.

  7. Morigaki, A.; Tsukade, K.; Arimitsu, S.; Konno, T.; Kubota, T. Tetrahedron2013, 69, 1521.

    Article  CAS  Google Scholar 

  8. Rand, L.; Dolinski, R. J. J. Org. Chem.1966, 31, 4061.

    Article  CAS  Google Scholar 

  9. Hafiz, I. S. A. Z. Naturforsch., B: J. Chem. Sci.2000, 55, 321.

    Article  CAS  Google Scholar 

  10. (a) Brode, W. R.; Littman, J. B. J. Am. Chem. Soc.1931, 53, 1531. (b) Von Strandtmann, M.; Cohen, M. P.; Shavel, J., Jr. J. Heterocycl. Chem.1970, 7, 1311. (с) Osyanin, V. A.; Osipov, D. V.; Klimochkin, Yu. N. Chem. Heterocycl. Compd.2011, 47, 108. [Khim. Geterotsikl. Soedin.2011, 136.]

  11. Rene, L.; Poncet, J.; Auzou, G. Synthesis1986, 419.

  12. Kats, M. M.; Lavretskaya, É. F.; Chervin, I. I.; El’natashov, Yu. I.; Kostyanovskii, R. G. Pharm. Chem. J.1987, 21, 411. [Khim. Farm. Zh.1987, 21, 675.]

  13. Deka, B.; Baruah, P. K.; Deb, M. L. Org. Biomol. Chem. 2018, 16, 7806.

    Article  CAS  Google Scholar 

  14. Sheldrick, G. M. Acta Crystallogr., Sect. A: Found. Crystallogr.2008, A64, 112.

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Acknowledgment

This study was supported by the Russian Foundation for Basic Research (project 18-33-20249). The authors are grateful to V. B. Rybakov (Moscow State University) for performing X-ray structural analysis.

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Correspondence to Vitaly А. Osyanin.

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Translated from Khimiya Geterotsiklicheskikh Soedinenii, 2020, 56(5), 529–536

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Lukashenko, A.V., Osipov, D.V., Osyanin, V.А. et al. Reactions of naphthalen-2-ol Mannich bases with β-aminoacrylonitriles and methyl 3-morpholinoacrylate. Chem Heterocycl Comp 56, 529–536 (2020). https://doi.org/10.1007/s10593-020-02695-4

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