1. 2013
  2. Monolithic polymeric sorbents for high-performance chromatography of synthetic polymers.

    Vlakh, E. G., Maksimova, E. F. & Tennikova, T. B., 2013, In: Polymer Science - Series B. 55, 1-2, p. 55-62

    Research output: Contribution to journalArticlepeer-review

  3. New supramolecular AuI-CuI complex as potential luminescent label for proteins

    Krupenya, D. V., Snegurov, P. A., Grachova, E. V., Gurzhiy, V. V., Tunik, S. P., Melnikov, A. S., Serdobintsev, P. Y., Vlakh, E. G., Sinitsyna, E. S. & Tennikova, T. B., 2013, In: Inorganic Chemistry. 52, 21, p. 12521-12528

    Research output: Contribution to journalArticle

  4. Polymer monoliths as efficient solid phases for enzymatic polynucleotide degradation followed by fast HPLC analysis.

    Volokitina, M. V., Vlakh, E. G., Platonova, G. A., Vinokhodov, D. O. & Tennikova, T. B., 2013, In: Journal of Separation Science. 36, 17, p. 2793-2805

    Research output: Contribution to journalArticle

  5. 2012
  6. Macroporous methacrylate-based monoliths as platforms for DNA microarrays.

    Sinitsyna, E. S., Walter, J-G., Vlakh, E. G., Stahl, F., Kasper, C. & Tennikova, T. B., 2012, In: Talanta. 93, p. 139-146

    Research output: Contribution to journalArticle

  7. Polymers in Orthopedic Surgery and Tissue Engineering: From Engineering Materials to Smart Biofunctionalization of a Surface.

    Коржиков, В. А., Влах, Е. Г. & Тенникова, Т. Б., 2012, In: Polymer Science - Series A. 54, 8, p. 1203-1221

    Research output: Contribution to journalLiterature reviewpeer-review

  8. Твердофазные системы биологического распознавания на основе макропористных полимерных монолитов.

    Влах, Е. Г., Коржиков, В. А. & Тенникова, Т. Б., 2012, In: ИЗВЕСТИЯ АКАДЕМИИ НАУК. СЕРИЯ ХИМИЧЕСКАЯ. 5, p. 931-956

    Research output: Contribution to journalLiterature reviewpeer-review

  9. 2011
  10. Macroporous polymeric materials for bioanalytical microchips

    Sinitsyna, E. S., Rober, M. Y., Vlakh, E. G. & Tennikova, T. B., 1 Jun 2011, In: Russian Journal of Applied Chemistry. 84, 6, p. 1012-1017 6 p.

    Research output: Contribution to journalArticlepeer-review

  11. In vitro modeling of cell-scaffold interaction

    Korzhikov, V. A., Vlakh, E. G., Kasper, C. & Tennikova, T. B., 1 May 2011, In: Russian Journal of Bioorganic Chemistry. 37, 3, p. 270-276 7 p.

    Research output: Contribution to journalArticlepeer-review

  12. Monodisperse polystyrene microspheres used as porogenes in the synthesis of polymer monoliths

    Vlakh, E. G., Sergeeva, Y. N., Evseeva, T. G., Saprykina, N. N., Men'Shikova, A. Y. & Tennikova, T. B., 1 Feb 2011, In: Polymer Science - Series A. 53, 2, p. 172-182 11 p.

    Research output: Contribution to journalArticlepeer-review

  13. Hydrophilic methacrylate monoliths as platforms for protein microarray.

    Sinitsyna, E. S., Vlakh, E. G., M.Yu., R. & Tennikova, T. B., 2011, In: Polymer. 52, p. 2132-2140

    Research output: Contribution to journalArticle

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