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Design, Optimization Process and Efficient Analysis for Preparation of Copolymer-Coated Superparamagnetic Nanoparticles

机译:共聚物包覆超顺磁性纳米粒子的设计,优化工艺及高效分析

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Magnetic 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.
机译:磁性纳米颗粒(MNP)是非常重要的系统,可潜在地用于药物输送系统,铁磁流体和废水处理。在许多情况下,例如在生物医学应用中,有必要用有机材料(例如聚合物)覆盖无机磁性颗粒。通过分散聚合的方法成功地合成了具有核/壳结构的超顺磁性纳米复合Fe3O4 /聚(马来酸酐-丙烯酸)P(MAH-co-AA)。氧化铁纳米粒子被用作核,而P(MAH-co-AA)作为壳被覆盖在Fe3O4磁性纳米粒子的表面。扫描电子显微镜(SEM)和透射电子显微镜(TEM)显示,Fe 3 O 4 / P(MAH-co-AA)磁性纳米复合材料的尺寸和立方形状高度均匀,平均尺寸为约17.06nm。 X射线衍射证实了磁铁矿核,并且还表明结合过程没有改变Fe 3 O 4的相。振动样品磁力计(VSM)显示,纳米颗粒是超顺磁性的,纯Fe3O4和复合纳米颗粒的饱和磁化强度分别为83.6和46.6 emu g-1。通过VSM的测量还表明,饱和氧化程度随着氧化铁浓度从Fe 3 O 4的1%增加到7wt%而增加。

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