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首页> 外文期刊>RSC Advances >Synthesis and characterization of multifunctional superparamagnetic iron oxide nanoparticles (SPION)/C-60 nanocomposites assembled by fullerene-amine click chemistry
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Synthesis and characterization of multifunctional superparamagnetic iron oxide nanoparticles (SPION)/C-60 nanocomposites assembled by fullerene-amine click chemistry

机译:用富勒烯 - 胺咔哒化学组装的多功能超顺磁性氧化铁纳米颗粒(SpiON)/ C-60纳米复合材料的合成与表征

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摘要

The fabrication of multifunctional nanostructures constitutes an interesting area of research. Here we used a simple fullerene-amine coupling chemistry to produce a photofunctional and antioxidant magnetic material composed of multiple C-60 molecules covalently bound to core monodispersed superparamagnetic iron oxide nanoparticles (SPIONs). For this, core SPIONs were synthesized by thermal decomposition, using iron(III) acetylacetonate as the iron precursor, and the resulting hydrophobic SPIONs were coated with a thin amino-functionalized silica layer. C-60 molecules were covalently linked to the core SPIONs by a simple fullerene-amine coupling reaction, a method promoting the assembly of the pursued nanocomposite. Fourier transform infrared spectroscopy, thermogravimetric analysis, and transmission electron microscopy were used all along the fabrication process to demonstrate the efficient assembly of the SPION/C-60 nanocomposite. We confirm that the latter brings together the disparate physico-chemical properties of its components. Using vibrating sample magnetometry we demonstrate that the core SPION confers a superparamagnetic character to the nanocomposite. We also demonstrate that fullerenes confer photosensitizing properties to the latter, as illustrated by the photo-oxidation of 1,5-dihydroxynaphthalene. Interestingly, the hydrophobic SPION/C-60 nanocomposite was easily solubilized in water using polyvinylpyrrolidone, offering the possibility of evaluating its properties in physiological conditions and paving the way to further biomedical applications. Therefore, we also demonstrate that water-soluble SPION/C-60 has a good T-2 relaxivity, conferred by its core superparamagnetic component, and could potentially be used as a contrast agent in magnetic resonance imaging. Furthermore, we show that the hydrophilic nanocomposite has a remarkable antioxidant capacity which is provided by its fullerene component. In summary, our work provides a facile method to produce composite nanostructures that bring together the attractive properties of monodispersed SPIONs and those of fullerene C-60 molecules, which can be exploited in a broad range of applications, such as photodynamic therapy, photocatalytic oxidation of organic pollutants and radical scavenging, to name only a few.
机译:多功能纳米结构材料的构成一个有趣的研究领域。在这里,我们使用了一个简单富勒烯胺偶联化学,以产生共价结合到核心多个C-60分子构成的光官能和抗氧化磁性材料单分散的超顺磁性氧化铁纳米粒子(SPIONs)。为此,芯SPIONs通过热分解合成,使用铁(III)乙酰丙酮化物作为铁前体,将得到的疏水SPIONs被涂覆有薄氨基官能化的二氧化硅层。 C-60分子通过简单的富勒烯胺偶联反应共价连接至核SPIONs,一种方法促进组件所追求的纳米复合材料的。傅里叶变换红外光谱法,热重分析,和透射电子显微镜中使用的所有沿制造过程证明SPION / C-60的纳米复合材料的高效率的装配。我们确认,后者汇集了其组件的不同的物理化学性质。使用振动样品磁强计,我们证明了核心SPION赋予超顺磁性字符的纳米复合材料。我们还表明,富勒烯共同赋予光敏特性后者,通过1,5-二羟基萘的光氧化,如图所示。有趣的是,所述疏水性SPION / C-60的纳米复合材料很容易在水中使用聚乙烯基吡咯烷酮溶解,将提供在生理条件下评价其特性和铺路进一步生物医学应用的可能性。因此,我们还证明,水溶性SPION / C-60具有良好的T-2弛豫,通过其芯超顺部件赋予,并且可以潜在地用作在磁共振成像中的造影剂。此外,我们表明,亲水性纳米复合材料具有由它的富勒烯组件提供了显着的抗氧化能力。总之,我们的工作提供了一种简便的方法,以产生复合的纳米结构,汇集单分散SPIONs的吸引人的特性和那些富勒烯C-60分子,其可以在宽范围的应用,如光动力疗法,光催化氧化被利用的有机污染物和自由基,仅举几例。

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  • 来源
    《RSC Advances》 |2016年第74期|共9页
  • 作者单位

    Univ Malaga BIONAND Andalusian Ctr Nanomed &

    Biotechnol Junta Andalucia Severo Ochoa 35 Malaga 29590 Spain;

    Univ Malaga BIONAND Andalusian Ctr Nanomed &

    Biotechnol Junta Andalucia Severo Ochoa 35 Malaga 29590 Spain;

    Univ Versailles St Quentin Yvelines UMR 8635 Grp Etud Matiere Condensee GEMaC 45 Ave Etats Unis F-78035 Versailles France;

    Univ Paris Saclay Univ Versailles St Quentin En Yvelines UMR CNRS 8180 Inst Lavoisier Versailles 45 Ave Etats Unis F-78035 Versailles France;

    Univ Malaga BIONAND Andalusian Ctr Nanomed &

    Biotechnol Junta Andalucia Severo Ochoa 35 Malaga 29590 Spain;

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  • 正文语种 eng
  • 中图分类 化学;
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