1. Changes in the Physicochemical Properties of Nickel-Containing ZSM-5 Zeolite under Mechanical Treatment

    Velichkina, L. M., Zaikovskii, V., Barbashin, Y. E., Ryabova, N., Perevezentsev, S. A. & Vosmerikov, A. V., 2020, In: Химия в интересах устойчивого развития. 28, 4, p. 366-374 9 p.

    Research output: Contribution to journalArticlepeer-review

  2. Chemical and texture promoters in Cu-Fe-Al oxide nanocomposite catalysts for combustion of solid fuel gasification products

    Bulavchenko, O. A., Pochtar, A. A., Gerasimov, E. Y., Fedorov, A. V., Chesalov, Y. A., Saraev, A. A., Yakovlev, V. A. & Kaichev, V. V., 25 Jan 2020, In: Applied Catalysis A: General. 590, 8 p., 117364.

    Research output: Contribution to journalArticlepeer-review

  3. Chemical mechanisms of prebiotic chirality amplification

    Bryliakov, K. P., Aug 2020, In: Research. 2020, 8 p., 5689246.

    Research output: Contribution to journalReview articlepeer-review

  4. Chiral autoamplification meets dynamic chirality control to suggest nonautocatalytic chemical model of prebiotic chirality amplification

    Talsi, E. P., Bryliakova, A. A., Ottenbacher, R. V., Rybalova, T. V. & Bryliakov, K. P., 4 Nov 2019, In: Research. 2019, 9 p., 4756025.

    Research output: Contribution to journalArticlepeer-review

  5. Chiral Manganese Aminopyridine Complexes: The Versatile Catalysts of Chemo- and Stereoselective Oxidations with H2O2

    Ottenbacher, R. V., Talsi, E. P. & Bryliakov, K. P., 1 Jan 2018, In: Chemical Record. 18, 1, p. 78-90 13 p.

    Research output: Contribution to journalArticlepeer-review

  6. Comparative Study of Distribution of Active Sites According to Their Stereospecificity in Propylene Polymerization over the Traditional TiCl3 and Supported Titanium–Magnesium Catalysts with Different Composition

    Nikolaeva, M., Matsko, M. & Zakharov, V., 1 Mar 2018, In: Macromolecular Chemistry and Physics. 219, 5, 9 p., 1700488.

    Research output: Contribution to journalArticlepeer-review

  7. Comparisons between homogeneous and immobilized 1-(2,6-dibenzhydryl-4-nitrophenylimino)-2-mesityliminoacenaphthylnickel bromide as a precatalyst in ethylene polymerization

    Huang, C., Zakharov, V. A., Semikolenova, N. V., Matsko, M. A., Mahmood, Q., Talsi, E. P. & Sun, W. H., 1 Apr 2019, In: Journal of Catalysis. 372, p. 103-108 6 p.

    Research output: Contribution to journalArticlepeer-review

  8. Composite “LiCl/MWCNT” as advanced water sorbent for thermal energy storage: Sorption dynamics

    Grekova, A. D., Gordeeva, L. G., Lu, Z., Wang, R. & Aristov, Y. I., 1 Mar 2018, In: Solar Energy Materials and Solar Cells. 176, p. 273-279 7 p.

    Research output: Contribution to journalArticlepeer-review

  9. Composite “LiCl/MWCNT/PVA” for adsorption thermal battery: Dynamics of methanol sorption

    Girnik, I. S., Grekova, A. D., Li, T. X., Wang, R. Z., Dutta, P., Srinivasa Murthy, S. & Aristov, Y. I., May 2020, In: Renewable and Sustainable Energy Reviews. 123, 9 p., 109748.

    Research output: Contribution to journalArticlepeer-review

  10. Composite “LiCl/vermiculite” as advanced water sorbent for thermal energy storage

    Grekova, A. D., Gordeeva, L. G. & Aristov, Y. I., Sept 2017, In: Applied Thermal Engineering. 124, p. 1401-1408 8 p.

    Research output: Contribution to journalArticlepeer-review

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