Publications by authors named "Sergey V Maksimov"

The current article describes the biological activity of new biomaterials combining the "green" properties of humic substances (HSs) and silver nanoparticles. The aim is to investigate the antioxidant activity (AOA) of HS matrices (macroligands) and AgNPs stabilized with humic macroligands (HS-AgNPs). The unique chemical feature of HSs makes them very promising ligands (matrices) for AgNP stabilization.

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A fast method for preparing aqueous graphene oxide (GO) dispersions by electrochemical oxidation of a graphite anode without preliminary intercalation with oxidizing agents is proposed. Ultrasonic probing was used in the modulation mode of ultrasonic waves (work/rest) for more efficient graphite oxidation-exfoliation. It is shown that the 4/2 s mode of ultrasonic modulation is the most effective due to the probe material's low corrosion while maintaining the optimum synthesis temperature not exceeding 30-35 °C and achieving the best characteristics of the resulting product.

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Article Synopsis
  • The study explores the use of nanoplatforms, specifically iron oxide nanoparticles (IONs) modified with different polymers, for the delivery of the anticancer drug doxorubicin to tumors while minimizing toxicity to healthy cells.
  • Four types of polymer modifications are compared: cationic (PEI), anionic (PSS), and nonionic (dextran), along with porous carbon, demonstrating varying drug loading and release profiles at different pH levels.
  • Results indicate that PEI-modified IONs have the highest drug loading capacity, while PSS-modified IONs facilitate significant drug release in acidic conditions typical of tumors, suggesting potential for prolonged therapeutic effects without harming healthy tissue.
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Chiral nanostructures exhibiting different absorption of right- and left-handed circularly polarized light are of rapidly growing interest due to their potential applications in various fields. Here, we have studied the induction of chirality in atomically thin (0.6-1.

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Here we report formation of gold nanoparticles (GNPs) in micelles of polytyrosine-PEG copolymers that combine the properties of a reducer and a stabilizer. The size and properties of the GNPs were tailored by the excess chloroaurate over the copolymer. The latter quickly formed non-covalent complexes with HAuCl4 and then slowly reduced it to form GNPs.

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