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Hierarchical gold-decorated magnetic nanoparticle clusters with controlled size

机译:大小可控的分层金装饰磁性纳米粒子簇

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摘要

We present a new route to stable magnetic-plasmonic nanocomposite materials with exceptional control over composite size and very high monodispersity. The method involves the assembly of magnetic iron oxide nanoparticles, of any size in the superparamagnetic size range, whose steric repulsion is gradually reduced by competitive stabilizer desorption arising from the presence of a tertiary silica phase. Subsequent addition of gold nanoparticles results in hierarchical assemblies in the form of gold-decorated magnetic nanoparticle clusters, in a range of possible sizes from 20 to 150 nm, selected by the timing of the addition. This approach adds plasmonic and chemical functionality to the magnetic clusters and improves the physical robustness and processability of the suspensions. Most critically, detailed NMR relaxation analysis demonstrates that the effect of the gold NPs on the interaction between bulk solvent and the magnetic moments of the cluster is minimal and that the clusters remain superparamagnetic in nature. These advantages enhance the potential of the materials as size-selected contrast agents for magnetic resonance imaging. The possibility of generalizing the approach for the production of hierarchical assemblies of variable composition is also demonstrated.
机译:我们提出了一种稳定的磁等离子体纳米复合材料的新途径,该复合材料具有对复合材料尺寸的出色控制和非常高的单分散性。该方法涉及组装超顺磁性尺寸范围内的任何尺寸的磁性氧化铁纳米粒子,其空间排斥由于叔硅相的存在而引起的竞争性稳定剂解吸而逐渐减小。随后添加金纳米颗粒导致以金装饰的磁性纳米颗粒簇的形式的分层组装,其通过添加的时间选择在20至150nm的可能尺寸范围内。这种方法为磁簇增加了等离子体和化学功能,并改善了悬浮液的物理强度和可加工性。最关键的是,详细的NMR弛豫分析表明,金纳米颗粒对本体溶剂与簇的磁矩之间的相互作用的影响极小,并且簇在本质上仍保持超顺磁性。这些优点增强了材料作为磁共振成像的尺寸选择造影剂的潜力。还展示了通用化生产可变组成的层次化装配的方法的可能性。

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