Публикации

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  1. Spectroscopy and distribution of Ce3+ ions content in CaF2-SrF2-BaF2 crystals. Bulletin of the Russian Academy of Sciences: Physics, 2024, Vol. 88, Suppl. 4, pp. S592–S599.
    DOI: 10.1134/S1062873824710389
  2. Photodynamic Processes in LiCaAlF6 Crystals with Double Activation by Ce3+ and Yb3+ Ions. Bulletin of the Russian Academy of Sciences: Physics, 2024, Vol. 88, Suppl. 4, pp. S609–S614
    DOI: 10.1134/S1062873824710420
  3. Особенности ап-конверсионной люминесценции концентрационных рядов монокристаллов и наночастиц SrF2-ErF3 при возбуждении на уровень 4I11/2 ионов Er3+. Известия высших учебных заведений. Материалы электронной техники. 2024;27(4). https://doi.org/10.17073/16
    https://doi.org/10.17073/1609-3577j.met202408.607
  4. Study of the spectral and kinetic characteristics of the Er3+ ion in BaY1.8Lu0.2F8 mixed crystals to assess the possibility of continuous laser oscillation at a wavelength of 2.7 μm 2024 International Conference Laser Optics (ICLO), Saint Petersburg, Russ
    10.1109/iclo59702.2024.10624501
  5. Highly dispersed anti-Stokes phosphors based on KGd2F7:Yb,Er single-phase solid solutions. Nanosystems: Phys. Chem. Math., 2024, 15 (5), 702–709
    DOI 10.17586/2220-8054-2024-15-5-702-709
  6. Structure and luminescence properties of EuF3 and SrF2:Eu nanoparticles after microwave plasma annealing in “methane–hydrogen”. Dalton Trans. 2024
    https://doi.org/10.1039/D4DT01664E
  7. Stabilization of the Ba4Y3F17 phase in the NaF-BaF2-YF3 system. Condensed Matter and Interphases. 2024; 26(2): 314–320
    https://doi.org/10.17308/kcmf.2024.26/11942
  8. X-ray luminescence of Sr0.925–xBaxEu0.075F2.075 nanopowders. Condensed Matter and Interphases. 2024;26(2): 247–252
    https://doi.org/10.17308/kcmf.2024.26/11937
  9. Fluorite solid solutions of Congruent Melting in the PbF2–CdF2–RF3 systems // Cryst. Rep. 2024, V.69(2), p.270-278
    10.1134/S1063774524600182
  10. Fluorite-like phases based on barium and rare earth fluorides. Journal of Structural Chemistry.
    https://doi.org/10.26902/JSC_id12684
  11. Numerical Model of Temperature-Dependent Thermal Conductivity in M1-xRxF2+x Heterovalent Solid Solution Nanocomposites, where M Stands for Alkaline-Earth Metals and R for Rare-Earth Metals // Nanosystems: Physics, Chemistry, Mathematics. 2024. V. 15(2) 25

  12. Syntheses of strontium fluoride nanoparticles in a microreactor with intensely swirling flows // Nanosystems. 2024. V. 13. Nanosystems: Phys. Chem. Math., 2024, 15 (1), 115–121.
    DOI 10.17586/2220-8054-2024-15-1-115-121. 
  13. The Influence of Concentrations of Sensitizers and Activators on Luminescence Kinetics Parameters of Up-Conversion Nanocomplexes NaYF4:Yb3+/Tm3+. Photonics 2024, 11, 228.
    doi.org/10.3390/photonics11030228
  14. Synthesis of KGd2F7:Yb:Er Luminophores by Co-Precipitation from Aqueous Solutions. Journal of Structural Chemistry. 2024. V. 65, P.138–148.
    https://doi.org/10.1134/S002247662401013X
  15. Photo- and X-ray induced cytotoxicity of CeF3-YF3-TbF3 nanoparticle-polyvinylpyrrolidone –“Radachlorin” composites for combined photodynamic therapy. Materials 2024, 17, 316.
    https://doi.org/10.3390/ma17020316
  16. NaGdF4:Yb,Er,Tm upconversion nanoparticles for bioimaging in shortwave-infrared range: study of energy transfer processes and composition optimization. Photonics 2024, 11, 38
    10.3390/photonics11010038
  17. Optical spectroscopy of the Er3+ ions heavily doped BaY1.8Lu0.2F8 mixed crystals. Optical Materials 147 (2024) 114585 
    https://doi.org/10.1016/j.optmat.2023.114585
  18. Effect of the fluorinating agent type (NH4F, NaF, KF) on the particle size and emission properties of SrF2:Yb:Er luminophores // J. Mater. Chem. C. 2024.
    https://doi.org/10.1039/D3TC03926A