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Synthesized of PEG-6000 coated MgFe2O4 nanoparticles based on natural iron sand by co-precipitation method

机译:通过共沉淀法基于天然铁砂的PEG-6000涂覆的MgFe2O4纳米粒子合成

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The polymer coated Magnesium Ferrite nanoparticles (MgFe2O4) based on natural iron sand, Mg(CH3COO)2.4H2O, and PEG-6000 have been successfully prepared by co-precipitation method. The mass variation of PEG-6000 content was from 0 to 12 gram. It was prepared at synthesize temperature of 70°C. The PEG coating reduced the effect of agglomeration, so the coercivity value can be closed to soft magnets. The nanoparticle of synthesized has MgFe2O4 single phase and cubic spinel structure. The bonding of MgFe2O4 and PEG-6000 as a coating material was confirmed by FTIR curve. The MgFe2O4 density decreased with the increasing of PEG 6000 content. On the other hand, the coercivity value was slightly reduced as the addition of PEG-6000, with the lowest value was obtained on 8 gram PEG content. The optimum condition is obtained at addition of 8 gram PEG 6000 to MgFe2O4, with coercivity, saturation, and remanence are 198.41 Oe, 52.53 emu/g, and 8.51 emu/g, respectively. So that, the sample is widely used as absorbance material of heavy metal.
机译:通过共沉淀法成功地制备了基于天然铁砂,Mg(CH3COO)2.4H 2 O和PEG-6000的聚合物涂覆的镁铁氧体纳米颗粒(MgFe2O4)。 PEG-6000含量的质量变化为0至12克。它在合成温度为70℃下制备。 PEG涂层降低了附聚的效果,因此矫顽力值可以闭合到软磁体上。合成的纳米颗粒具有MgFe2O4单相和立方尖晶石结构。通过FTIR曲线证实了作为涂料的MgFe2O4和PEG-6000的键合。随着PEG 6000含量的增加,MgFe2O4密度降低。另一方面,由于添加PEG-6000,矫顽力值略微减少,在8克PEG含量上获得最低值。在加入8克PEG 6000至MgFe 2 O 4的情况下获得最佳状况,矫顽力,饱和度和剩磁分别为198.41 oe,52.53 ee / g和8.51 emu / g。因此,样品被广泛用作重金属的吸光度材料。

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