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The role of diffusion-controlled growth in the formation of uniform iron oxide nanoparticles with a link to magnetic hyperthermia

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dc.title The role of diffusion-controlled growth in the formation of uniform iron oxide nanoparticles with a link to magnetic hyperthermia en
dc.contributor.author Smolková, Ilona S.
dc.contributor.author Kazantseva, Natalia E.
dc.contributor.author Babayan, Vladimir Artur
dc.contributor.author Vilčáková, Jarmila
dc.contributor.author Pizúrová, Naděžda
dc.contributor.author Sáha, Petr
dc.relation.ispartof Crystal Growth and Design
dc.identifier.issn 1528-7483 Scopus Sources, Sherpa/RoMEO, JCR
dc.date.issued 2017
utb.relation.volume 17
utb.relation.issue 5
dc.citation.spage 2323
dc.citation.epage 2332
dc.type article
dc.language.iso en
dc.publisher American Chemical Society (ACS)
dc.identifier.doi 10.1021/acs.cgd.6b01104
dc.relation.uri http://pubs.acs.org/doi/abs/10.1021/acs.cgd.6b01104
dc.description.abstract Uniform superparamagnetic iron oxide nanoparticles were obtained by coprecipitation under synthesis conditions that guarantee diffusion-controlled growth. Study of nanoparticle crystal structure formation by HRTEM showed that at the earlier stage of the reaction some nanoparticles consist of crystalline core and amorphous surface layer, whereas resulting particles display a high degree of crystalline order. This result suggests that nanoparticles are formed from fusion of noncrystalline primary particles of iron (hydr)oxide. Slow addition of iron salts to excess ammonia restricts the amount of primary particles; as a result, their diffusion is the limiting step of the reaction, which provides the formation of uniform nanoparticles. Importantly, 5 min reaction product shows the same polydispersity and heating efficiency as the final product. Thus, monodispersity determines the particle properties and facilitates the control of heat generation for a given amplitude and frequency of AMF. Magnetic dipole interactions between single nanoparticles lead to the formation of dense aggregates (multicore particles) at the beginning of the reaction. The dispersions of separated multicore particles with hydrodynamic size of about 85 nm shows higher heating efficiency than dispersion of as-prepared nanoparticles. The increase of aggregate size leads to a decrease of heating efficiency to the value of as-prepared nanoparticles due to a demagnetizing effect. © 2017 American Chemical Society. en
utb.faculty University Institute
dc.identifier.uri http://hdl.handle.net/10563/1007358
utb.identifier.obdid 43876688
utb.identifier.scopus 2-s2.0-85018993308
utb.identifier.wok 000400802500005
utb.identifier.coden CGDEF
utb.source j-wok
dc.date.accessioned 2017-09-08T12:14:44Z
dc.date.available 2017-09-08T12:14:44Z
dc.description.sponsorship ERDF, European Regional Development Fund; LO1504, NPU, Northwestern Polytechnical University
dc.description.sponsorship Ministry of Education, Youth and Sports of the Czech Republic - Program NPU I [LO1504]; Operational Program Research and Development for Innovations - European Regional Development Fund (ERDF); national budget of the Czech Republic [CZ.1.05/2.1.00/19.0409]
utb.ou Centre of Polymer Systems
utb.contributor.internalauthor Smolková, Ilona S.
utb.contributor.internalauthor Kazantseva, Natalia E.
utb.contributor.internalauthor Babayan, Vladimir Artur
utb.contributor.internalauthor Vilčáková, Jarmila
utb.contributor.internalauthor Sáha, Petr
utb.fulltext.affiliation Ilona S. Smolkova †, Natalia E. Kazantseva *,†, Vladimir Babayan †, Jarmila Vilcakova †, Nadezda Pizurova ‡, Petr Saha † † Centre of Polymer Systems, Tomas Bata University in Zlin, Trida Tomase Bati 5678, 760 01 Zlin, Czech Republic ‡ Institute of Physics of Materials of the Academy of Sciences of the Czech Republic, Zizkova 22, 616 62 Brno, Czech Republic
utb.fulltext.dates Received: July 25, 2016 Revised: April 6, 2017 Published: April 10, 2017
utb.fulltext.faculty University Institute
utb.fulltext.faculty University Institute
utb.fulltext.faculty University Institute
utb.fulltext.faculty University Institute
utb.fulltext.faculty University Institute
utb.fulltext.ou Centre of Polymer Systems
utb.fulltext.ou Centre of Polymer Systems
utb.fulltext.ou Centre of Polymer Systems
utb.fulltext.ou Centre of Polymer Systems
utb.fulltext.ou Centre of Polymer Systems
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