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Fe2O3 Nanoparticles Doped with Gd: Phase Transformations as a Result of Thermal Annealing
(Molecules, 2021)
The aim of this work is to study the effect of the phase composition of the synthesized Fe2O3
-
Gd2O3 nanoparticles on the efficiency of using magnetic hyperthermia as a basis for experiments.
This class of structures is one of the most promising materials for biomedical applications and
magnetic resonance imaging. In the course of the study, the dynamics of phase transformations ...
Study of Radiation-Induced Damage Processes in CeZrO4–YZrO3 Ceramics Caused by Helium Irradiation
(Materials, 2023)
Kozlovskiy, A.; Borgekov, D.B.; Zdorovets, M.V.; Kadyrzhanov, K.K.; Shlimas, D.I. Study of Radiation-Induced Damage Processes in CeZrO4–YZrO3 Ceramics Caused by Helium Irradiation. Materials 2023, 16, 198. https://doi.org/10.3390/ma16010198
Evaluation of the Efficiency of Detection and Capture of Manganese in Aqueous Solutions of FeCeOx Nanocomposites Doped with Nb2O5
(Sensors, 2020)
The main purpose of this work is to study the effectiveness of using FeCeOx nanocomposites
doped with Nb2O5 for the purification of aqueous solutions from manganese. X-ray diffraction,
energy–dispersive analysis, scanning electron microscopy, vibrational magnetic spectroscopy,
and mössbauer spectroscopy were used as research methods. It is shown that an increase in
the dopant ...
Effect of Irradiation with Low-Energy He2+ Ions on Degradation of Structural, Strength and Heat-Conducting Properties of BeO Ceramics
(Crystals, 2022)
The paper is devoted to the study of radiation-induced damage kinetics in beryllium
oxide ceramics under irradiation with low-energy helium ions with fluences of 1015–1018 ion/cm2
.
It was revealed that at irradiation fluences above 1017 ion/cm2
, a decrease in radiation-induced
damage formation and accumulation rate is observed, which indicates the saturation effect. At ...
Preparation and morphology-dependent wettability of porous alumina membranes
(Beilstein Journal of Nanotechnology, 2018)
This article presents the preparation and study of the wetting properties of porous alumina membranes (PAMs) with a thickness of
25 to 75 μm and with a different pore sizes. The fabrication process features, scanning electron microscopy and atomic force
microscopy characterization results are presented. The comparative analysis of PAM surfaces (outer and inner) and the effect ...
Study of Radiation Resistance to Helium Swelling of Li2ZrO3/LiO and Li2ZrO3 Ceramics
(Crystals, 2022)
The key aim of this paper is to study the presence effect of LiO impurity phases in Li2ZrO3
ceramics on the resistance to helium swelling and structural degradation during implanted helium
accumulation in the near-surface layer structure. The hypothesis put forward is based on a number
of scientific papers, in which it was reported that the presence of two or more phases in ...
Environmentally friendly loading of palladium nanoparticles on nanoporous PET track-etched membranes grafted by poly(1-vinyl-2-pyrrolidone) via RAFT polymerization for the photocatalytic degradation of metronidazole
(RSC Advances, 2023)
Nanoporous track-etched membranes (TeMs) are highly versatile materials that have shown promise in
various applications such as filtration, separation, adsorption, and catalysis due to their mechanical
integrity and high surface area. The performance of TeMs as catalysts for removing toxic pollutants is
greatly influenced by the pore diameter, density, and functionalization ...
Research of Structural, Strength and Thermal Properties of ZrO2—CeO2 Ceramics Doped with Yttrium
(Crystals, 2022)
In this work, using a mechanochemical solid-phase synthesis method, ZrO2—CeO2 ceramics doped with yttrium were obtained, which have great prospects for use as a basis for dispersed
nuclear fuel materials or inert nuclear fuel matrices. The purpose of this work was to study the
formation of the ZrO2—CeO2 phase composition, depending on the concentration of yttrium dopant,
as ...










