1. Exploring the multifunctionality in metal-organic framework materials: How do the stilbenedicarboxylate and imidazolyl ligands tune the characteristics of coordination polymers?

    Barsukova, M. O., Sapchenko, S. A., Kovalenko, K. A., Samsonenko, D. G., Potapov, A. S., Dybtsev, D. N. & Fedin, V. P., 21 Apr 2018, In: New Journal of Chemistry. 42, 8, p. 6408-6415 8 p.

    Research output: Contribution to journalArticlepeer-review

  2. Exceptionally effective benzene/cyclohexane separation using a nitro-decorated metal-organic framework

    Sapianik, A. A., Kovalenko, K. A., Samsonenko, D. G., Barsukova, M. O., Dybtsev, D. N. & Fedin, V. P., 28 Jul 2020, In: Chemical communications (Cambridge, England). 56, 59, p. 8241-8244 4 p.

    Research output: Contribution to journalArticlepeer-review

  3. Enhancement of CO2 Uptake and Selectivity in a Metal-Organic Framework by the Incorporation of Thiophene Functionality

    Bolotov, V. A., Kovalenko, K. A., Samsonenko, D. G., Han, X., Zhang, X., Smith, G. L., McCormick, L. J., Teat, S. J., Yang, S., Lennox, M. J., Henley, A., Besley, E., Fedin, V. P., Dybtsev, D. N. & Schröder, M., 7 May 2018, In: Inorganic Chemistry. 57, 9, p. 5074-5082 9 p.

    Research output: Contribution to journalArticlepeer-review

  4. Electric-field-induced metastable state of electrical conductivity in polyaniline nanoparticles polymerized in nanopores of a MIL-101 dielectric matrix

    Romanenko, A. I., Dybtsev, D. N., Fedin, V. P., Aliev, S. B. & Limaev, K. M., 1 Jan 2015, In: JETP Letters. 101, 1, p. 57-60 4 p.

    Research output: Contribution to journalArticlepeer-review

  5. Efficient separation of methane, ethane and propane on mesoporous metal-organic frameworks

    Lysova, A. A., Kovalenko, K. A., Nizovtsev, A. S., Dybtsev, D. N. & Fedin, V. P., 1 Feb 2023, In: Chemical Engineering Journal. 453, 139642.

    Research output: Contribution to journalArticlepeer-review

  6. Crystal structure of zinc coordination polymers based on 1,4-diazabicyclo[2.2.2]octane N,N′-dioxide: Effect of hydrophobicity of carboxylate ligands

    Demakov, P. A., Yudina, Y. A., Samsonenko, D. G., Dybtsev, D. N. & Fedin, V. P., Mar 2021, In: Journal of Structural Chemistry. 62, 3, p. 403-411 9 p.

    Research output: Contribution to journalArticlepeer-review

  7. Crystal Structure of Coordination Polymers Based on A Heterometallic Carboxylate Complex

    Sapianik, A. A., Semenenko, E. E., Samsonenko, D. G., Dybtsev, D. N. & Fedin, V. P., 1 Mar 2018, In: Journal of Structural Chemistry. 59, 2, p. 487-493 7 p.

    Research output: Contribution to journalArticlepeer-review

  8. Crystal structure of coordination cobalt(II) and zinc(II) polymers with 1,4-diazabicyclo[2.2.2]octane N,N′-dioxide

    Abasheeva, K. D., Demakov, P. A., Dybtsev, D. N. & Fedin, V. P., Aug 2022, In: Journal of Structural Chemistry. 63, 8, p. 1349-1357 9 p.

    Research output: Contribution to journalArticlepeer-review

  9. Correction: Materials with high proton conductivity above 200 °C based on a nanoporous metal-organic framework and non-aqueous ionic media (RSC Advances (2017) 7 (403-407) DOI: 10.1039/C6RA25552C)

    Ponomareva, V. G., Aliev, S. B., Shutova, E. S., Pishchur, D. P., Dybtsev, D. N. & Fedin, V. P., 2017, In: RSC Advances. 7, 43, p. 26857-26857 1 p.

    Research output: Contribution to journalComment/debatepeer-review

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