D. V. Sviridov
Affiliations: | Belarusian State University |
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Kokorin AI, Sviridova TV, Konstantinova EA, et al. (2020) Dynamics of Photogenerated Charge Carriers in TiO2/MoO3, TiO2/WO3 and TiO2/V2O5 Photocatalysts with Mosaic Structure Catalysts. 10: 1022 |
Konstantinova EA, Kokorin AI, Logvinovich AS, et al. (2020) EPR Study on the Intercalation of Azoles into Transition Metal Oxides Applied Magnetic Resonance. 1-14 |
Sviridova TV, Sadovskaуa LY, Konstantinova EA, et al. (2019) Photoaccumulating TiO 2 –MoO 3 , TiO 2 –V 2 O 5 , and TiO 2 –WO 3 Heterostructures for Self-Sterilizing Systems with the Prolonged Bactericidal Activity Catalysis Letters. 149: 1147-1153 |
Kokorin AI, Sviridova TV, Kolbanev IV, et al. (2018) Structure and Photocatalytic Properties of TiO2/MoO3 and TiO2/V2O5 Nanocomposites Obtained by Mechanochemical Activation Russian Journal of Physical Chemistry B. 12: 330-335 |
Sviridova TV, Sadovskaya LY, Kokorin AI, et al. (2017) Photoaccumulating film systems based on TiO2/MoO3 and TiO2/MoO3:V2O5 nanoheterostructures Russian Journal of Physical Chemistry B. 11: 348-353 |
Sviridova TV, Logvinovich AS, Sviridov DV. (2017) Electrochemical growing of Ni-MoO3 nanocomposite coatings via redox mechanism Surface & Coatings Technology. 319: 6-11 |
Sviridova TV, Sadovskaya LY, Kokorin AI, et al. (2016) Photoinduced processes in thin films of MoO3 and mixed V2O5: MoO3 oxides Russian Journal of Physical Chemistry B. 10: 561-565 |
Baraboshina AA, Sviridova TV, Kokorin AI, et al. (2016) Solid-state synthesis of molybdenum–vanadium mixed oxide of tubular morphology Russian Journal of Physical Chemistry B. 10: 28-33 |
Sviridova TV, Sadovskaуa LY, Shchukina EM, et al. (2016) Nanoengineered thin-film TiO2/h-MoO3 photocatalysts capable to accumulate photoinduced charge Journal of Photochemistry and Photobiology a-Chemistry. 327: 44-50 |
Sviridova TV, Kokorin AI, Antonova AA, et al. (2015) Thermally induced transformations in nanostructured molybdenum-vanadium oxides synthesized by a solvothermal method Russian Journal of Physical Chemistry B. 9: 36-42 |