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Synthesis of Graphene Oxide-Fe 3 O 4 Based Nanocomposites Using the Mechanochemical Method and in Vitro Magnetic Hyperthermia

机译:机械化学法和体外磁热法合成氧化石墨烯-Fe 3 O 4基纳米复合材料

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The study presented in this work consists of two parts: The first part is the synthesis of Graphene oxide-Fe 3 O 4 nanocomposites by a mechanochemical method which, is a mechanical process that is likely to yield extremely heterogeneous particles. The second part includes a study on the efficacy of these Graphene oxide-Fe 3 O 4 nanocomposites to kill cancerous cells. Iron powder, ball milled along with graphene oxide in a toluene medium, underwent a controlled oxidation process. Different phases of GO-Fe 3 O 4 nanocomposites were obtained based on the composition used for milling. As synthesized nanocomposites were characterized by x-ray diffraction (XRD), alternating magnetic field (AFM), Raman spectroscopy, and a vibrating sample magnetometer (VSM). Additionally, the magnetic properties required to obtain high SAR values (Specific Absorption Rate-Power absorbed per unit mass of the magnetic nanocomposite in the presence of an applied magnetic field) for the composite were optimized by varying the milling time. Nanocomposites milled for different extents of time have shown differential behavior for magneto thermic heating. The magnetic composites synthesized by the ball milled method were able to retain the functional groups of graphene oxide. The efficacy of the magnetic nanocomposites for killing of cancerous cells is studied in vitro using HeLa cells in the presence of an AC (Alternating Current) magnetic field. The morphology of the HeLa cells subjected to 10 min of AC magnetic field changed considerably, indicating the death of the cells.
机译:这项工作中涉及的研究包括两个部分:第一部分是通过机械化学方法合成氧化石墨烯-Fe 3 O 4纳米复合材料,这是一种机械过程,很可能会产生非常不均匀的颗粒。第二部分包括对这些氧化石墨烯-Fe 3 O 4纳米复合材料杀死癌细胞的功效的研究。将铁粉与氧化石墨烯一起在甲苯介质中球磨,进行了受控的氧化过程。基于用于研磨的组成,获得了不同相的GO-Fe 3 O 4纳米复合材料。通过x射线衍射(XRD),交变磁场(AFM),拉曼光谱和振动样品磁力计(VSM)对合成的纳米复合材料进行表征。另外,通过改变研磨时间来优化获得复合材料的高SAR值所需的磁性能(比吸收率-在施加磁场的情况下磁性纳米复合材料每单位质量吸收的功率)。在不同时间范围内研磨的纳米复合材料在磁热加热方面表现出不同的行为。通过球磨法合成的磁性复合材料能够保留氧化石墨烯的官能团。使用HeLa细胞在AC(交流)磁场的存在下,体外研究了磁性纳米复合材料杀死癌细胞的功效。受到10分钟AC磁场作用的HeLa细胞的形态发生了很大变化,表明细胞死亡。

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