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Chernysheva Maria Grigor'evna

Publications in Math-Net.Ru

  1. Comparison of nonstoichiometric and Mg-containing calcium-deficient hydroxyapatites obtained by enzymatic synthesis

    Mendeleev Commun., 36:2 (2026),  232–234
  2. Nanodiamond–drug conjugates for coating xenogenic heart valve prostheses

    Mendeleev Commun., 34:1 (2024),  104–106
  3. The effect of tritiated water on the alkaline phosphatase inactivation after ultrasound and gamma-rays irradiation

    Mendeleev Commun., 33:6 (2023),  858–860
  4. Peculiarities of atomic hydrogen interactions with detonation nanodiamonds

    Mendeleev Commun., 33:2 (2023),  228–230
  5. In vivo behavior of carboxymethylcellulose based microgels containing 67Cu

    Mendeleev Commun., 32:5 (2022),  658–660
  6. Preparation and properties of Miramistin–hyaluronic acid coatings on the nanodiamond surface

    Mendeleev Commun., 32:4 (2022),  501–503
  7. Complex of lysozyme and Myramistin: formation and adsorption at the water–xylene interface

    Mendeleev Commun., 30:5 (2020),  645–646
  8. Mechanism of formation of adsorption complexes amikacin–detonation nanodiamond

    Mendeleev Commun., 29:3 (2019),  318–319
  9. Presonication of nanodiamond hydrosols in radiolabeling by a tritium thermal activation method

    Mendeleev Commun., 28:5 (2018),  495–496
  10. Reduction of cytotoxicity of Myramistin by adsorption on nanodiamonds

    Mendeleev Commun., 27:4 (2017),  421–423
  11. Radionuclide and tensiometry approaches to studying lysozyme behaviors in water–ionic liquid systems

    Mendeleev Commun., 27:3 (2017),  296–298
  12. Colloidal behavior of detonation nanodiamonds in the aqueous-organic liquid systems in the presence of pluronic P123

    Mendeleev Commun., 26:4 (2016),  293–294
  13. Hydrogen spillover through a gas phase

    Mendeleev Commun., 26:1 (2016),  59–60
  14. Radionuclide Diagnostics of the Adsorption of Biologically Active Substances on Detonated Nanodiamonds

    Mendeleev Commun., 22:6 (2012),  290–291
  15. Ionic surfactant adsorption at aqueous/organics interfaces determined by a scintillation phase method

    Mendeleev Commun., 21:2 (2011),  99–100
  16. Adsorption of a surfactant mixture at a water–p-xylene interface as studied by a scintillation phase technique

    Mendeleev Commun., 18:6 (2008),  345–346
  17. Surfactant adsorption at the water–p-xylene interface as studied by the scintillation phase method

    Mendeleev Commun., 17:6 (2007),  357–358


© Steklov Math. Inst. of RAS, 2026