Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Репозиторий Евразийского национального университета имени Л.Н. Гумилева
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Study of Magnetic Properties of Fe100-xNix Nanostructures Using the Mössbauer Spectroscopy Method 

Kadyrzhanov, Kayrat K.; Rusakov, Vyacheslav S.; Fadeev, Maxim S.; Kiseleva, Tatyana Yu.; Kozlovskiy, Artem L.; Kenzhina, Inesh E.; Zdorovets, Maxim V. (Nanomaterials, 2019)
Hyperfine interactions of 57Fe nuclei in Fe100-xNix nanostructures synthesized in polymer ion-track membranes were studied by Mössbauer spectroscopy. The main part of obtained nanostructures was Fe100-xNix nanotubes with bcc structure for 0 ≤ x ≤ 40, and with fcc structure for 50 ≤ x ≤ 90. The length, outside diameter and wall thickness of nanotubes were 12 µm, 400 ± 10 nm and ...
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Synthesis and Properties of Ferrite-Based Nanoparticles 

Kadyrzhanov, Kayrat K.; Egizbek, Kamila; Kozlovskiy, Artem L.; Zdorovets, Maxim V. (Nanomaterials, 2019)
The work is dedicated to the study of the structural and optical characteristics, as well as the phase transformations, of ferrite nanoparticles of CeO2-Fe2O3. To characterize the results obtained, the methods of scanning and transmission microscopy, X-ray diffraction (XRD) spectroscopy, and Mössbauer spectroscopy were applied. It was found that the initial nanoparticles are ...
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Electron Beam Induced Enhancement of the Catalytic Properties of Ion-Track Membranes Supported Copper Nanotubes in the Reaction of the P-Nitrophenol Reduction 

Mashentseva, Anastassiya A.; Shlimas, Dmitriy I.; Kozlovskiy, Artem L.; Zdorovets, Maxim V.; Russakova, Alyona V.; Kassymzhanov, Murat; Borisenko, Alexander N. (Catalysts, 2019)
This study considers the effect of various doses of electron irradiation on the crystal structure and properties of composite catalysts based on polyethylene terephthalate track-etched membranes and copper nanotubes. Copper nanotubes were obtained by electroless template synthesis and irradiated with electrons with 3.8 MeV energy in the dose range of 100–250 kGy in increments ...
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Study of Magnetic Properties of Fe100-xNix Nanostructures Using the Mössbauer Spectroscopy Method 

Kadyrzhanov, Kayrat K.; Rusakov, Vyacheslav S.; Fadeev, Maxim S.; Kiseleva, Tatyana Yu.; Kozlovskiy, Artem L.; Kenzhina, Inesh E.; Zdorovets, Maxim V. (Nanomaterials, 2019)
Hyperfine interactions of 57Fe nuclei in Fe100-xNix nanostructures synthesized in polymer ion-track membranes were studied by Mössbauer spectroscopy. The main part of obtained nanostructures was Fe100-xNix nanotubes with bcc structure for 0 ≤ x ≤ 40, and with fcc structure for 50 ≤ x ≤ 90. The length, outside diameter and wall thickness of nanotubes were 12 µm, 400 ± 10 nm and ...
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Synthesis and Properties of Ferrite-Based Nanoparticles 

Kadyrzhanov, Kayrat K.; Egizbek, Kamila; Kozlovskiy, Artem L.; Zdorovets, Maxim V. (Nanomaterials, 2019)
The work is dedicated to the study of the structural and optical characteristics, as well as the phase transformations, of ferrite nanoparticles of CeO2-Fe2O3. To characterize the results obtained, the methods of scanning and transmission microscopy, X-ray diffraction (XRD) spectroscopy, and Mössbauer spectroscopy were applied. It was found that the initial nanoparticles are ...
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Electron Beam Induced Enhancement of the Catalytic Properties of Ion-Track Membranes Supported Copper Nanotubes in the Reaction of the P-Nitrophenol Reduction 

Mashentseva, Anastassiya A.; Shlimas, Dmitriy I.; Kozlovskiy, Artem L.; Zdorovets, Maxim V.; Russakova, Alyona V.; Kassymzhanov, Murat; Borisenko, Alexander N. (Catalysts, 2019)
This study considers the effect of various doses of electron irradiation on the crystal structure and properties of composite catalysts based on polyethylene terephthalate track-etched membranes and copper nanotubes. Copper nanotubes were obtained by electroless template synthesis and irradiated with electrons with 3.8 MeV energy in the dose range of 100–250 kGy in increments ...
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Study of the Applicability of Fe Nanotubes as an Anode Material of Lithium-Ion Batteries 

Kozlovskiy, Artem L.; Zdorovets, Maxim V.; Shumskaya, Alena E.; Kadyrzhanov, Kayrat K. (Progress In Electromagnetics Research M, 2019)
The paper presents the results of the use of iron nanotubes as the anode material of lithiumion batteries. To assess the degradation of the morphology of nanostructures after different numbers of cycles of life tests, the method of scanning electron microscopy, Mossbauer spectroscopy, and X-ray diffraction analysis were applied. It is shown that the decrease in discharge capacity ...
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Fe3O4 Nanoparticles for Complex Targeted Delivery and Boron Neutron Capture Therapy 

Dukenbayev, Kanat; Korolkov, Ilya V.; Tishkevich, Daria I.; Kozlovskiy, Artem L.; Trukhanov, Sergey V.; Gorin, Yevgeniy G.; Shumskaya, Elena E.; Kaniukov, Egor Y.; Vinnik, Denis A.; Zdorovets, Maxim V.; Anisovich, Marina; Trukhanov, Alex V.; Tosi, Daniele; Molardi, Carlo (Nanomaterials, 2019)
Magnetic Fe3O4 nanoparticles (NPs) and their surface modification with therapeutic substances are of great interest, especially drug delivery for cancer therapy, including boron-neutron capture therapy (BNCT). In this paper, we present the results of boron-rich compound (carborane borate) attachment to previously aminated by (3-aminopropyl)-trimethoxysilane (APTMS) iron oxide ...

Евразийский национальный университет имени Л.Н. Гумилева | Научная библиотека | Contact Us
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Kozlovskiy, Artem L. (8)
Zdorovets, Maxim V. (8)Kadyrzhanov, Kayrat K. (5)Borisenko, Alexander N. (2)Egizbek, Kamila (2)Fadeev, Maxim S. (2)Kassymzhanov, Murat (2)Kenzhina, Inesh E. (2)Kiseleva, Tatyana Yu. (2)Mashentseva, Anastassiya A. (2)... View MoreSubjectcomposite (2)copper nanotubes (2)crystal structure (2)electron beam irradiation (2)enchasing catalytic activity (2)ferrite nanoparticles (2)iron–nickel (2)magnetic nanostructures (2)magnetic properties (2)magnetic structures (2)... View MoreDate Issued
2019 (8)
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Евразийский национальный университет имени Л.Н. Гумилева | Научная библиотека | Contact Us
Яндекс.Метрика
Научная библиотека | Contact Us