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Polymer/Iron Oxide Nanoparticle Composites—A Straight Forward and Scalable Synthesis Approach

机译:聚合物/氧化铁纳米粒子复合材料—一种直接可扩展的合成方法

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摘要

Magnetic nanoparticle systems can be divided into single-core nanoparticles (with only one magnetic core per particle) and magnetic multi-core nanoparticles (with several magnetic cores per particle). Here, we report multi-core nanoparticle synthesis based on a controlled precipitation process within a well-defined oil in water emulsion to trap the superparamagnetic iron oxide nanoparticles (SPION) in a range of polymer matrices of choice, such as poly(styrene), poly(lactid acid), poly(methyl methacrylate), and poly(caprolactone). Multi-core particles were obtained within the Z-average size range of 130 to 340 nm. With the aim to combine the fast room temperature magnetic relaxation of small individual cores with high magnetization of the ensemble of SPIONs, we used small (<10 nm) core nanoparticles. The performed synthesis is highly flexible with respect to the choice of polymer and SPION loading and gives rise to multi-core particles with interesting magnetic properties and magnetic resonance imaging (MRI) contrast efficacy.
机译:磁性纳米粒子系统可以分为单核纳米粒子(每个粒子只有一个磁芯)和磁性多核纳米粒子(每个粒子只有几个磁芯)。在这里,我们报告了一种多核纳米粒子合成方法,该方法基于在明确定义的水包油乳液中的可控沉淀过程,以将超顺磁性氧化铁纳米粒子(SPION)捕获在一系列选择的聚合物基质(例如聚苯乙烯)中,聚(乳酸),聚(甲基丙烯酸甲酯)和聚(己内酯)。在130至340nm的Z平均尺寸范围内获得多核颗粒。为了将小型单个核的快速室温磁弛豫与SPION整体的高磁化强度结合起来,我们使用了小的(<10 nm)核纳米颗粒。进行的合成在选择聚合物和SPION方面具有高度的灵活性,并产生具有令人感兴趣的磁性和磁共振成像(MRI)对比功效的多核颗粒。

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