Формирование структуры и магнитных свойств коллоидных наночастиц феррита марганца в зависимости от длительности микроволнового гидротермального in situ синтеза; Перспективы развития фундаментальных наук; Т. 2 : Химия
| Parent link: | Курзина, И. А. (химик ; 1972-). Перспективы развития фундаментальных наук=Prospects of Fundamental Sciences Development: сборник научных трудов XXI Международной конференции студентов, аспирантов и молодых ученых, г. Томск, 23-26 апреля 2024 г..— .— Томск: Изд-во ТПУ Т. 2 : Химия.— 2024.— С. 295-297 |
|---|---|
| Main Author: | Чернозем П. В. Полина Викторовна |
| Corporate Author: | Национальный исследовательский Томский политехнический университет (570) |
| Other Authors: | Чернозем Р. В. Роман Викторович (научный руководитель), Сурменев Р. А. Роман Анатольевич |
| Summary: | Заглавие с экрана This work reports a one-step ultrafast in-situ microwave hydrothermal (MAH) synthesis of soft magnetic colloidal nanoparticles using citric acid (CA). The chelation of CA with lattice metal ions led to the formation of a stable colloid based on 100 % pure MFO spinel NPs with a size of 32±10 nm and very soft magnetic properties, formed as a result of the MAH synthesis at a temperature of 175 °C and a duration of 30 minutes. Observably, the increase in the MAH synthesis duration from 30 minutes to 3 hours resulted in a decrease in the phase purity of CA-functionalized MFO NPs from 100 % to 52 % and the saturation magnetization from 43.4±0.7 to 33.9±2.0 emu/g owing to the increased CA degradation Текстовый файл |
| Language: | Russian |
| Published: |
2024
|
| Subjects: | |
| Online Access: | http://earchive.tpu.ru/handle/11683/80526 |
| Format: | Electronic Book Chapter |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=674079 |
Similar Items
Ultrafast in situ microwave-assisted hydrothermal synthesis of nanorods and soft magnetic colloidal nanoparticles based on MnFe2O4; Ceramics International; Vol. 50, iss. 10
Published: (2024)
Published: (2024)
Nose-to-Glioblastoma Axonal Transport of Manganese Ferrite Nanoparticles under the Influence of Olfactory Stimulation; ACS Applied Nano Materials; Vol. 8, iss. 14
Published: (2025)
Published: (2025)
Релаксивность парамагнитных комплексных соединений марганца и гадолиния; Химико-фармацевтический журнал; Т. 53, № 7
Published: (2019)
Published: (2019)
Использование магнитных наночастиц в биомедицине; Бюллетень сибирской медицины; Т. 7, № 2
by: Першина А. Г. Александра Геннадьевна
Published: (2008)
by: Першина А. Г. Александра Геннадьевна
Published: (2008)
Comparative Analysis of Experimental Methods for Determining the Curie Temperature of Ferrite Materials; Russian Journal of Nondestructive Testing; Vol. 60, iss. 10
Published: (2024)
Published: (2024)
Behavior of ZnO nanoparticles in glycine solution: pH and size effect on aggregation and adsorption; Colloid and Interface Science Communications; Vol. 39
Published: (2020)
Published: (2020)
Исследование структуры, фазового состава и магнитных свойств наночастиц магнетита, допированных галлием, для биомедицинских приложений; Перспективы развития фундаментальных наук; Т. 1 : Физика
by: Бакшеев А. И. Артём Игоревич
Published: (2025)
by: Бакшеев А. И. Артём Игоревич
Published: (2025)
Получение нового наноколлоидного радиофармпрепарата на основе оксида алюминия; Известия Томского политехнического университета [Известия ТПУ]; Т. 323, № 3 : Химия
Published: (2013)
Published: (2013)
Разработка автоматизированной установки для синтеза наночастиц благородных металлов методом лазерной абляции объемных мишеней в жидкости; Известия Томского политехнического университета [Известия ТПУ]; Т. 323, № 2 : Математика и механика. Физика
by: Смагулов А. А. Аманжол Амангельдыевич
Published: (2013)
by: Смагулов А. А. Аманжол Амангельдыевич
Published: (2013)
Study of DNA Interaction with Cobalt Ferrite Nanoparticles; Journal of Nanoscience and Nanotechnology; Vol. 11, № 3
by: Pershina A. G. Aleksandra Gennadievna
Published: (2011)
by: Pershina A. G. Aleksandra Gennadievna
Published: (2011)
Relaxivity of Paramagnetic Complexes of Manganese and Gadolinium; Pharmaceutical Chemistry Journal; Vol. 53, No. 7
Published: (2019)
Published: (2019)
Novel Biocompatible Magnetoelectric MnFe2O4 Core@BCZT Shell Nano–Hetero-Structures with Efficient Catalytic Performance; Small; Vol. 19, iss. 42
Published: (2023)
Published: (2023)
Investigations on structural, magnetic properties of lithium zinc ferrites and radar absorbing properties of ferrite-polymer composites; Materials Chemistry and Physics; Vol. 340
Published: (2025)
Published: (2025)
Исследование влияния сегнетоэлектрической оболочки перовскита Ba0,95Ca0,15Zr0,1Ti0,9O3 на морфологию, состав, структуру и магнитные свойства наночастиц магнетита; Перспективы развития фундаментальных наук; Т. 2 : Химия
by: Уракова А. О. Алина Олеговна
Published: (2024)
by: Уракова А. О. Алина Олеговна
Published: (2024)
Методика получения феррита меди из отходов микроэлектроники; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 334, № 12
by: Новиков А. С. Александр Станиславович
Published: (2023)
by: Новиков А. С. Александр Станиславович
Published: (2023)
High-quality low-phosphorous manganese alloys for production of steel of low-temperature reliability; Key Engineering Materials; Vol. 839 : Materials Science, Mechanical Engineering and Energy: Problems and Prospects for Development, MSMEE 2019
Published: (2020)
Published: (2020)
Effect of sintering regimes on the microstructure and magnetic properties of LiTiZn ferrite ceramics; Ceramics International; Vol. 45, iss. 2, pt. B
Published: (2018)
Published: (2018)
Magnetization and Curie Point of LiZn Ferrite Synthesized by Electron Beam Heating of Mechanically Activated Reagents; Russian Physics Journal; Vol. 65, iss. 11
Published: (2023)
Published: (2023)
Spark plasma sintering of highly magnetic Fe3O4 and CoFe2O4 ceramics from hollow spheres synthesized by thermal plasma spraying; Materials Characterization; Vol. 230, Pt. A
Published: (2025)
Published: (2025)
The influence of lanthanum content in the Fe2O3-Li2O-La(OH)3 system on phase formation and properties of composite material; Тонкие химические технологии; Vol 20, No 2
Published: (2025)
Published: (2025)
A Study of Magnetic Phase Transitions in Nickel Zinc Ferrites with Differing Structure; Russian Physics Journal; Vol. 67, iss. 5
Published: (2024)
Published: (2024)
Supporting data and methods for the characterization of iron oxide nanoparticles conjugated with pH-(low)-insertion peptide, testing their cytotoxicity and analyses of biodistribution in SCID mice bearing MDA-MB231 tumor; Data in Brief; Vol. 29
Published: (2020)
Published: (2020)
Effect of compressive mechanical stress on the magnetic properties of LiTiZn ferrite ceramics; Ceramics International; Vol. 46, iss. 10
by: Malyshev A. V. Andrei Vladimirovich
Published: (2020)
by: Malyshev A. V. Andrei Vladimirovich
Published: (2020)
Microstructure and electromagnetic properties of LiFe5O8 ferrite ceramics prepared from wet- and dry-milled powders; Ceramics International; Vol. 47, iss. 17
Published: (2021)
Published: (2021)
The influence of inorganic substances on oxidation characteristics of nanopowders: Electronic resources; The 9th Korea-Russia International Symposium on Science and Technology (KORUS 2005), June 26 - July 2, 2005, Novosibirsk State Technical University, Russia
Published: (2005)
Published: (2005)
Study of the initial magnetic permeability of LiTiZnMn ferrites obtained by liquid-phase sintering under radiation-thermal and thermal conditions; Eurasian Physical Technical Journal; Vol. 19, No. 1
by: Surzhikov A. P. Anatoly Petrovich
Published: (2022)
by: Surzhikov A. P. Anatoly Petrovich
Published: (2022)
Nano-bio interaction of magnetic nanoparticles with cells in a tumor at the single-cell level; Nano Today; Vol. 56
Published: (2024)
Published: (2024)
Adhesion of Escherichia coli and Lactobacillus fermentum to Films and Electrospun Fibrous Scaffolds from Composites of Poly(3-hydroxybutyrate) with Magnetic Nanoparticles in a Low-Frequency Magnetic Field; International Journal of Molecular Sciences; Vol. 25, iss. 1
Published: (2024)
Published: (2024)
pH-triggered delivery of magnetic nanoparticles depends on tumor volume; Nanomedicine: Nanotechnology, Biology and Medicine; Vol. 23
Published: (2019)
Published: (2019)
Valence state conversion of Mn ions in Li2O–ZnO-GeO2 glass-ceramics: Spectral, structural, ESR and XRF studies; Ceramics International; Vol. 50, iss. 11, Pt. B
Published: (2024)
Published: (2024)
Исследование влияния длительности микроволнового гидротермального In situ cинтеза на структуру и магнитные свойства коллоидных наночастиц MnFe2O4; Химия и химическая технология в XXI веке; Т. 2
Published: (2024)
Published: (2024)
Effect of ball milling on defects level, Curie point and microstructure of LiTiZn ferrite ceramics; Journal of Thermal Analysis and Calorimetry; Vol. 138, iss. 3
Published: (2019)
Published: (2019)
Non-magnetic shell coating of magnetic nanoparticles as key factor of toxicity for cancer cells in a low frequency alternating magnetic field; Colloids and Surfaces B: Biointerfaces; Vol. 206
Published: (2021)
Published: (2021)
Magnetic-Responsive Doxorubicin-Containing Materials Based on Fe3O4 Nanoparticles with a SiO2/PEG Shell and Study of Their Effects on Cancer Cell Lines; International Journal of Molecular Sciences; Vol. 23, iss. 16
Published: (2022)
Published: (2022)
Исследование влияния параметров микроволнового гидротермального синтеза на морфологию и физические свойства наночастиц феррита марганца; Химия и химическая технология в XXI веке; Т. 2
Published: (2024)
Published: (2024)
Распределение марганца в торфяных залежах Томской области; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 326, № 7
by: Архипов В. С. Виктор Сергеевич
Published: (2015)
by: Архипов В. С. Виктор Сергеевич
Published: (2015)
Electrical and magnetic properties of ZrO2-doped lithium-titanium-zinc ferrite ceramics; Ceramics International; Vol. 45, iss. 16
Published: (2019)
Published: (2019)
Osteogenic Differentiation Triggered by Intracellular Magnetoelectric Stimulation of Core–Shell Nanotransducers under Remotely Applied Magnetic Fields; ACS Nano; Vol. 19, iss. 50
Published: (2025)
Published: (2025)
Water-Based Suspensions of Iron Oxide Nanoparticles with Electrostatic or Steric Stabilization by Chitosan: Fabrication, Characterization and Biocompatibility; Sensors; Vol. 17, iss. 11
Published: (2017)
Published: (2017)
Relationship between magnetic properties and microstructure of ferrites during sintering in radiation and radiation-thermal conditions; Eurasian Physical Technical Journal; Vol. 18, No. 1
Published: (2021)
Published: (2021)
Similar Items
-
Ultrafast in situ microwave-assisted hydrothermal synthesis of nanorods and soft magnetic colloidal nanoparticles based on MnFe2O4; Ceramics International; Vol. 50, iss. 10
Published: (2024) -
Nose-to-Glioblastoma Axonal Transport of Manganese Ferrite Nanoparticles under the Influence of Olfactory Stimulation; ACS Applied Nano Materials; Vol. 8, iss. 14
Published: (2025) -
Релаксивность парамагнитных комплексных соединений марганца и гадолиния; Химико-фармацевтический журнал; Т. 53, № 7
Published: (2019) -
Использование магнитных наночастиц в биомедицине; Бюллетень сибирской медицины; Т. 7, № 2
by: Першина А. Г. Александра Геннадьевна
Published: (2008) -
Comparative Analysis of Experimental Methods for Determining the Curie Temperature of Ferrite Materials; Russian Journal of Nondestructive Testing; Vol. 60, iss. 10
Published: (2024)