Cargando…

Effect of the Synthetic Approach on the Formation and Magnetic Properties of Iron-Based Nanophase in Branched Polyester Polyol Matrix

This article shows the success of using the chemical reduction method, the polyol thermolytic process, the sonochemistry method, and the hybrid sonochemistry/polyol process method to design iron-based magnetically active composite nanomaterials in a hyperbranched polyester polyol matrix. Four sample...

Descripción completa

Detalles Bibliográficos
Autores principales: Khannanov, Artur, Burmatova, Anastasia, Ignatyeva, Klara, Vagizov, Farit, Kiiamov, Airat, Tayurskii, Dmitrii, Cherosov, Mikhail, Gerasimov, Alexander, Vladimir, Evtugyn, Kutyreva, Marianna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9735957/
https://www.ncbi.nlm.nih.gov/pubmed/36499092
http://dx.doi.org/10.3390/ijms232314764
_version_ 1784846901751840768
author Khannanov, Artur
Burmatova, Anastasia
Ignatyeva, Klara
Vagizov, Farit
Kiiamov, Airat
Tayurskii, Dmitrii
Cherosov, Mikhail
Gerasimov, Alexander
Vladimir, Evtugyn
Kutyreva, Marianna
author_facet Khannanov, Artur
Burmatova, Anastasia
Ignatyeva, Klara
Vagizov, Farit
Kiiamov, Airat
Tayurskii, Dmitrii
Cherosov, Mikhail
Gerasimov, Alexander
Vladimir, Evtugyn
Kutyreva, Marianna
author_sort Khannanov, Artur
collection PubMed
description This article shows the success of using the chemical reduction method, the polyol thermolytic process, the sonochemistry method, and the hybrid sonochemistry/polyol process method to design iron-based magnetically active composite nanomaterials in a hyperbranched polyester polyol matrix. Four samples were obtained and characterized by transmission and scanning electron microscopy, infrared spectroscopy and thermogravimetry. In all cases, the hyperbranched polymer is an excellent stabilizer of the iron and iron oxides nanophase. In addition, during the thermolytic process and hybrid method, the branched polyol exhibits the properties of a good reducing agent. The use of various approaches to the synthesis of iron nanoparticles in a branched polyester polyol matrix makes it possible to control the composition, geometry, dispersity, and size of the iron-based nanophase and to create new promising materials with colloidal stability, low hemolytic activity, and good magnetic properties. The NMR relaxation method proved the possibility of using the obtained composites as tomographic probes.
format Online
Article
Text
id pubmed-9735957
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97359572022-12-11 Effect of the Synthetic Approach on the Formation and Magnetic Properties of Iron-Based Nanophase in Branched Polyester Polyol Matrix Khannanov, Artur Burmatova, Anastasia Ignatyeva, Klara Vagizov, Farit Kiiamov, Airat Tayurskii, Dmitrii Cherosov, Mikhail Gerasimov, Alexander Vladimir, Evtugyn Kutyreva, Marianna Int J Mol Sci Article This article shows the success of using the chemical reduction method, the polyol thermolytic process, the sonochemistry method, and the hybrid sonochemistry/polyol process method to design iron-based magnetically active composite nanomaterials in a hyperbranched polyester polyol matrix. Four samples were obtained and characterized by transmission and scanning electron microscopy, infrared spectroscopy and thermogravimetry. In all cases, the hyperbranched polymer is an excellent stabilizer of the iron and iron oxides nanophase. In addition, during the thermolytic process and hybrid method, the branched polyol exhibits the properties of a good reducing agent. The use of various approaches to the synthesis of iron nanoparticles in a branched polyester polyol matrix makes it possible to control the composition, geometry, dispersity, and size of the iron-based nanophase and to create new promising materials with colloidal stability, low hemolytic activity, and good magnetic properties. The NMR relaxation method proved the possibility of using the obtained composites as tomographic probes. MDPI 2022-11-25 /pmc/articles/PMC9735957/ /pubmed/36499092 http://dx.doi.org/10.3390/ijms232314764 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khannanov, Artur
Burmatova, Anastasia
Ignatyeva, Klara
Vagizov, Farit
Kiiamov, Airat
Tayurskii, Dmitrii
Cherosov, Mikhail
Gerasimov, Alexander
Vladimir, Evtugyn
Kutyreva, Marianna
Effect of the Synthetic Approach on the Formation and Magnetic Properties of Iron-Based Nanophase in Branched Polyester Polyol Matrix
title Effect of the Synthetic Approach on the Formation and Magnetic Properties of Iron-Based Nanophase in Branched Polyester Polyol Matrix
title_full Effect of the Synthetic Approach on the Formation and Magnetic Properties of Iron-Based Nanophase in Branched Polyester Polyol Matrix
title_fullStr Effect of the Synthetic Approach on the Formation and Magnetic Properties of Iron-Based Nanophase in Branched Polyester Polyol Matrix
title_full_unstemmed Effect of the Synthetic Approach on the Formation and Magnetic Properties of Iron-Based Nanophase in Branched Polyester Polyol Matrix
title_short Effect of the Synthetic Approach on the Formation and Magnetic Properties of Iron-Based Nanophase in Branched Polyester Polyol Matrix
title_sort effect of the synthetic approach on the formation and magnetic properties of iron-based nanophase in branched polyester polyol matrix
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9735957/
https://www.ncbi.nlm.nih.gov/pubmed/36499092
http://dx.doi.org/10.3390/ijms232314764
work_keys_str_mv AT khannanovartur effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT burmatovaanastasia effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT ignatyevaklara effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT vagizovfarit effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT kiiamovairat effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT tayurskiidmitrii effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT cherosovmikhail effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT gerasimovalexander effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT vladimirevtugyn effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix
AT kutyrevamarianna effectofthesyntheticapproachontheformationandmagneticpropertiesofironbasednanophaseinbranchedpolyesterpolyolmatrix