Publications by authors named "N N Dremova"

In this work, monolithic graphene oxide aerogel (GOA) with a volume of about 4 cm was obtained. In order to modify its properties, the GOA samples were irradiated with Co gamma rays with doses from 10 to 220 kGy. By using XPS it was found that the oxygen/carbon ratio in the samples studied decreases as a result of irradiation.

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Article Synopsis
  • The article discusses the creation of hybrid composite films by combining graphene oxide (GO) nanosheets with a spin-crossover complex and an organic cation, resulting in a new material called GO-1.
  • The hybrid material's properties were thoroughly analyzed using various advanced techniques, including microscopy and spectroscopy, to understand its structure and composition.
  • Results indicate that the GO nanosheets significantly affect the spin transition properties and magnetic behavior of the composite, highlighting the importance of the organic cation in the formation process.
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The electrochemical behavior of new electrode materials based on poly-N-phenylanthranilic acid (P-N-PAA) composites with reduced graphene oxide (RGO) was studied for the first time. Two methods of obtaining RGO/P-N-PAA composites were suggested. Hybrid materials were synthesized via in situ oxidative polymerization of N-phenylanthranilic acid (N-PAA) in the presence of graphene oxide (GO) (RGO/P-N-PAA-1), as well as from a P-N-PAA solution in DMF containing GO (RGO/P-N-PAA-2).

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Mesoporous polymer networks were prepared via the cross-linking radical copolymerization of non-toxic hydrophilic -vinylpyrrolidone (VP) with triethylene glycol dimethacrylate (TEGDM) and poly(ethylene glycol) methyl ester methacrylate (PEGMMA) in bulk, using appropriate soluble and thermodynamically compatible macromolecular additives with a branched structure as porogens. The branched copolymers of various monomer compositions were obtained by radical copolymerization in toluene, controlled by 1-decanethiol, and these materials were characterized by a wide set of physical chemical methods. The specific surface areas and surface morphology of the polymer networks were determined by nitrogen low-temperature adsorption or Rose Bengal (RB) sorption, depending on the copolymer compositions and scanning electron microscopy.

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An improved procedure for the preparation of aerogel granules of polytetrafluoroethylene-graphene oxide (PTFE-GO) with a composition of 50:50 (in wt %) and a specific density of 35 ± 2 mg/cm is described. The technique practically excludes the granule cracking. The specific density of the pellets after reduction using hydrazine vapor and annealing at 370 °C decreased to 29 ± 2 mg/cm.

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