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Tuning of electronic and magnetic properties of multifunctional r-CO-ATA-Fe_2O_3-composites for magnetic resonance imaging (MRI) contrast agent

机译:多功能r-CO-ATA-Fe_2O_3-复合材料用于磁共振成像(MRI)造影剂的电子和磁性性质的调节

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摘要

We have synthesized r-GO-ATA-Fe2O3 nanocomposites and studied their microstructural and electromagnetic properties for future possible magnetic resonance imaging for biomedical application. X-ray diffraction, transmission electron microscopy, Raman spectroscopy, X-ray photoelectron spectroscopy, and X-ray absorption near edge spectroscopy were used to study the structural and electronic properties, while a superconducting quantum interface device magnetometer was used for investigating the magnetic behavior of the nanocomposites. The nanocomposites have been found to reduce the graphitic structure of GO due to the substitution of carbon/oxygen and/or iron nanoparticles. Conversely, the electrical conductivity of nanocomposites is found to be high due to the formation of Fe-C/Fe-O bonds in the structure of the nanocomposites. The composites also exhibit superparamagnetic features as observed from the M-H hysteresis loop with saturation magnetization of approximate to 0.1emu/g at 1.8K temperature. The results, in general, suggest possible applicability of r-GO/Fe2O3 nanocomposites as an effective multifunctional platform for magnetic resonance imaging in biomedical applications.
机译:我们已经合成了r-GO-ATA-Fe2O3纳米复合材料,并研究了它们的微观结构和电磁特性,以供将来在生物医学应用中进行磁共振成像。 X射线衍射,透射电子显微镜,拉曼光谱,X射线光电子能谱和近边缘X射线吸收光谱用于研究结构和电子性质,而超导量子界面装置磁力计则用于研究磁性。纳米复合材料。已经发现由于碳/氧和/或铁纳米颗粒的取代,纳米复合材料降低了GO的石墨结构。相反,由于在纳米复合材料的结构中形成了Fe-C / Fe-O键,因此发现纳米复合材料的电导率较高。从M-H磁滞回线观察到,在1.8K温度下,饱和磁化强度约为0.1emu / g,该复合材料还表现出超顺磁性。通常,这些结果表明,r-GO / Fe2O3纳米复合材料可能是生物医学应用中磁共振成像的有效多功能平台。

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  • 来源
    《Journal of Applied Physics》 |2019年第3期|035301.1-035301.11|共11页
  • 作者单位

    Univ South Africa, CSET, Dept Phys, Private Bag X6,Florida 1710,Sci Campus, Johannesburg, South Africa;

    Univ South Africa, CSET, Dept Phys, Private Bag X6,Florida 1710,Sci Campus, Johannesburg, South Africa;

    Univ South Africa, CSET, Dept Phys, Private Bag X6,Florida 1710,Sci Campus, Johannesburg, South Africa;

    Univ South Africa, CSET, Dept Phys, Private Bag X6,Florida 1710,Sci Campus, Johannesburg, South Africa;

    Univ South Africa, CSET, Dept Phys, Private Bag X6,Florida 1710,Sci Campus, Johannesburg, South Africa;

    Tamkang Univ, Dept Phys, Taipei 251, Taiwan;

    Univ Johannesburg, Phys Dept, Highly Correlated Matter Res Grp, POB 524, ZA-2006 Auckland Pk, South Africa;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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