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Microwave-assisted synthesis of highly crystalline, multifunctional iron oxide nanocomposites for imaging applications

机译:微波辅助合成高度结晶,多官能氧化铁纳米复合材料进行成像应用

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摘要

We report a reproducible single-step, microwave-assisted approach for the preparation of multifunctional magnetic nanocomposites comprising superparamagnetic iron oxide (Fe3O4) cores, a polyelectrolyte stabilizer and an organic dye with no requirement for post-processing. The stabilisers poly(sodium 4-styrenesulfonate) (PSSS) and sodium polyphosphate (SPP) have been thoroughly investigated and from analysis using electron microscopy, dynamic light scattering measurements, magnetic hysteresis and magnetic resonance (MR) imaging, we show that the higher degree of Fe3O4 nanoparticle crystallinity achieved with the PSSS stabiliser leads to enhanced magnetic behaviour and thus better contrast agent relaxivity compared to the less crystalline, poorly defined particles obtained when SPP is employed as a stabiliser. We also demonstrate the potential for obtaining a multifunctional magnetic-fluorescent nanocomposite using our microwave-assisted synthesis. In this manner, we demonstrate the intimate link between synthetic methodology (microwave heating with a polyelectrolyte stabilizer) and the resulting properties (particle size, shape, and magnetism) and how this underpins the functionality of the resulting nanocomposites as agents for biomedical imaging.
机译:我们报告了一种可重复的单步,微波辅助方法,用于制备包括超顺磁性氧化铁(Fe3O4)芯,聚电解质稳定剂和有机染料的多官能磁性纳米复合材料,没有要求进行后处理。通过电子显微镜,动态光散射测量,磁滞和磁共振(MR)成像,已经详细研究了稳定剂聚(4-苯乙烯磺酸盐)(PSS)和多磷酸钠(SPP)和从分析,从而进行了分析,磁磁磁滞和磁共振(MR)成像,我们表明了更高的程度通过PSSSSSSS稳定剂实现的Fe3O4纳米颗粒结晶度导致磁性的增强,因此与SPP用作稳定剂时获得的较少结晶,所获得的较少的颗粒更好地造影剂松弛率。我们还证明了使用微波辅助合成获得多官能荧光纳米复合物的可能性。以这种方式,我们展示了合成方法(用聚电解质稳定剂的微波加热)和所得性质(颗粒尺寸,形状和磁性)之间的亲密连锁,以及如何为所得纳米复合材料的功能作为生物医学成像的药剂。

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  • 来源
    《RSC Advances》 |2016年第87期|共9页
  • 作者单位

    Univ Kent Sch Phys Sci Canterbury CT2 7NH Kent England;

    Univ Glasgow Sch Chem Glasgow G12 8QQ Lanark Scotland;

    Univ Glasgow Sch Chem Glasgow G12 8QQ Lanark Scotland;

    Univ Glasgow Sch Phys &

    Astron Glasgow G12 8QQ Lanark Scotland;

    Univ Glasgow Sch Phys &

    Astron Glasgow G12 8QQ Lanark Scotland;

    Univ Strathclyde Dept Pure &

    Appl Chem Glasgow G1 1XL Lanark Scotland;

    Univ Strathclyde Dept Pure &

    Appl Chem Glasgow G1 1XL Lanark Scotland;

    Univ Glasgow Sch Phys &

    Astron Glasgow G12 8QQ Lanark Scotland;

    Univ Kent Ctr Mol Proc Canterbury CT2 7NJ Kent England;

    Univ Kent Ctr Mol Proc Canterbury CT2 7NJ Kent England;

    Univ Kent Ctr Mol Proc Canterbury CT2 7NJ Kent England;

    Klinikum Goethe Univ Inst Med Virol Paul Ehrlich Str 40 D-60596 Frankfurt Germany;

    Kings Coll London Div Imaging Sci &

    Biomed Engn St Thomas Hosp London SE1 7EH England;

    Kings Coll London Div Imaging Sci &

    Biomed Engn St Thomas Hosp London SE1 7EH England;

    Kings Coll London Div Imaging Sci &

    Biomed Engn St Thomas Hosp London SE1 7EH England;

    Univ Glasgow Sch Chem Glasgow G12 8QQ Lanark Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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