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Effect of Au coating on the magnetic and structural properties of Fe nanoclusters for use in biomedical applications: A density-functional theory study

机译:Au涂层对生物医学应用中Fe纳米能器磁性和结构性能的影响:密度函数理论研究

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摘要

In this paper, we report the first systematic theoretical study of gold-coated iron nanoclusters, aiming at understanding the magnetic properties of this core-shell structure used in biomedical applications. The calculations based on density-functional theory focus on the effect of gold coating on the magnetic and structural properties of iron clusters of various sizes, and the reaction of the bare and coated iron clusters with oxygen. Our results show that the magnetic moment of iron nanocore with gold coating is still significantly higher than that in bulk Fe; the coupling between Fe atoms remained ferromagnetic and is insensitive to the thickness of the Au coating. Furthermore, oxygen remains molecular on a gold-coated Fe nanoparticle while it dissociates on a bare Fe nanoparticle. The improved chemical stability by gold coating prevents the iron core from oxidation as well as the coalescence and formation of thromboses in the body. Thus it is shown that gold coating is very promising for the magnetic particles to be functionalized for targeted drug delivery.
机译:在本文中,我们报告了第一个系统的理论研究,研究了镀金的铁纳米簇,旨在了解生物医学应用中使用的核-壳结构的磁性。基于密度泛函理论的计算重点在于镀金对各种尺寸的铁团簇的磁性和结构性能的影响,以及裸露和包覆的铁团簇与氧气的反应。我们的结果表明,具有金涂层的铁纳米核的磁矩仍显着高于块状Fe。 Fe原子之间的耦合保持铁磁性,并且对Au涂层的厚度不敏感。此外,氧在金包覆的铁纳米粒子上保持分子状态,而在裸露的铁纳米粒子上解离。通过金涂层改善的化学稳定性可防止铁芯氧化以及在体内聚结和形成血栓。因此表明,金涂层对于磁性颗粒被功能化以用于靶向药物递送是非常有前途的。

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