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Structural Insights into Magnetic Clusters Grown Inside Virus Capsids

机译:病毒衣壳内部生长的磁性簇的结构性见解

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Magnetic nanoparticles have multiple applications in materials science. In particular, virus capsids have been suggested as promising templates for building up nanometric-sized magnetic clusters by taking advantage of their inner cavity as a nanoreactor. In this study we investigate the magnetization of individual cobalt-filled cowpea mosaic virus empty virus-like particles using atomic force microscopy. We also combine the analysis of the effects of dehydration on the structure of virus particles with a comparison of their magnetic signal to that provided by commercially available magnetic nanoparticles of similar size. These two approaches allow the evaluation of the structure of the metallic cluster grown inside the virus capsid. We conclude that, rather than forming solid clusters, cobalt inside viruses forms a discontinuous structure that does not completely fill the virus cavity and reaches about 10% of its volume.
机译:磁性纳米粒子在材料科学中有多种应用。特别地,已经提出病毒衣壳作为有前途的模板,通过利用其内腔作为纳米反应器来构建纳米大小的磁簇。在这项研究中,我们使用原子力显微镜研究了单个钴填充的cow豆花叶病毒空病毒样颗粒的磁化强度。我们还将脱水对病毒颗粒结构的影响的分析与它们的磁信号与市售大小相似的磁性纳米颗粒所提供的磁信号的比较相结合。这两种方法可以评估病毒衣壳内部生长的金属簇的结构。我们得出的结论是,病毒内部的钴而不是形成坚固的簇,而是形成了一种不连续的结构,该结构不完全填充病毒腔并达到其体积的大约10%。

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