نمایش مختصر رکورد

dc.contributor.authorMahdavi Shahri, Mahnazen_US
dc.contributor.authorAzizi, Susanen_US
dc.date.accessioned1399-07-09T03:05:42Zfa_IR
dc.date.accessioned2020-09-30T03:05:42Z
dc.date.available1399-07-09T03:05:42Zfa_IR
dc.date.available2020-09-30T03:05:42Z
dc.date.issued2017-07-01en_US
dc.date.issued1396-04-10fa_IR
dc.date.submitted2017-05-26en_US
dc.date.submitted1396-03-05fa_IR
dc.identifier.citationMahdavi Shahri, Mahnaz, Azizi, Susan. (2017). Design, Optimization Process and Efficient Analysis for Preparation of Copolymer-Coated Superparamagnetic Nanoparticles. Journal of Nanostructures, 7(3), 205-215. doi: 10.22052/jns.2017.03.007en_US
dc.identifier.issn2251-7871
dc.identifier.issn2251-788X
dc.identifier.urihttps://dx.doi.org/10.22052/jns.2017.03.007
dc.identifier.urihttps://jns.kashanu.ac.ir/article_50068.html
dc.identifier.urihttps://iranjournals.nlai.ir/handle/123456789/233499
dc.description.abstractMagnetic nanoparticles (MNPs) are very important systems with potential use in drug delivery systems, ferrofluids, and effluent treatment. In many situations, such as in biomedical applications, it is necessary to cover inorganic magnetic particles with an organic material, such as polymers. A superparamagnetic nanocomposite Fe3O4/poly(maleic anhydride-co-acrylic acid) P(MAH-co-AA) with a core/shell structure was successfully synthesized by a dispersion polymerization route. Iron oxide nanoparticles were used as a core, and P(MAH-co-AA) as a shell was covered on the surface of the Fe3O4 magnetic nanoparticles. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) showed that the Fe3O4/P(MAH-co-AA) magnetic nanocomposite were highly uniform in size and cubic shape with the average size about 17.06 nm. X-ray diffraction confirmed magnetite cores and also indicated that the binding process did not change the phase of Fe3O4. Vibrational sample magnetometer (VSM) revealed the nanoparticles were superparamagnetic and the saturation magnetization was 83.6 and 46.6 emu g-1 for pure Fe3O4 and composite nanoparticles, respectively. Measurements by VSM also showed that the degree of saturation magnetization increased with increasing iron oxide concentration from 1% to 7 wt % of Fe3O4.en_US
dc.languageEnglish
dc.language.isoen_US
dc.publisherUniversity of Kashanen_US
dc.relation.ispartofJournal of Nanostructuresen_US
dc.relation.isversionofhttps://dx.doi.org/10.22052/jns.2017.03.007
dc.subjectCore-shell structureen_US
dc.subjectMagnetizationen_US
dc.subjectNanocompositesen_US
dc.subjectPolymerizationen_US
dc.titleDesign, Optimization Process and Efficient Analysis for Preparation of Copolymer-Coated Superparamagnetic Nanoparticlesen_US
dc.typeTexten_US
dc.typeResearch Paperen_US
dc.contributor.departmentDepartment of Chemistry, Faculty of Science, Shiraz Branch, Islamic Azad University, Shiraz, Iranen_US
dc.contributor.departmentDepartment of Bioprocess Technology, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, UPM Serdang, Selangor 43400, Malaysiaen_US
dc.citation.volume7
dc.citation.issue3
dc.citation.spage205
dc.citation.epage215


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