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Investigation of a Mesoporous Silicon Based Ferromagnetic Nanocomposite

机译:介孔硅基铁磁纳米复合材料的研究

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摘要

A semiconductor/metal nanocomposite is composed of a porosified silicon wafer and embedded ferromagnetic nanostructures. The obtained hybrid system possesses the electronic properties of silicon together with the magnetic properties of the incorporated ferromagnetic metal. On the one hand, a transition metal is electrochemically deposited from a metal salt solution into the nanostructured silicon skeleton, on the other hand magnetic particles of a few nanometres in size, fabricated in solution, are incorporated by immersion. The electrochemically deposited nanostructures can be tuned in size, shape and their spatial distribution by the process parameters, and thus specimens with desired ferromagnetic properties can be fabricated. Using magnetite nanoparticles for infiltration into porous silicon is of interest not only because of the magnetic properties of the composite material due to the possible modification of the ferromagnetic/superparamagnetic transition but also because of the biocompatibility of the system caused by the low toxicity of both materials. Thus, it is a promising candidate for biomedical applications as drug delivery or biomedical targeting.
机译:半导体/金属纳米复合材料由多孔硅片和嵌入的铁磁纳米结构组成。所获得的混合系统具有硅的电子性质以及所结合的铁磁金属的磁性。一方面,将过渡金属从金属盐溶液中电化学沉积到纳米结构的硅骨架中,另一方面,通过浸入并入溶液中制造的几纳米大小的磁性颗粒。可以通过工艺参数来调节电化学沉积的纳米结构的尺寸,形状及其空间分布,因此可以制造具有所需铁磁性能的样品。使用磁铁矿纳米颗粒渗透到多孔硅中不仅引起人们的关注,不仅因为复合材料的磁性,可能是由于铁磁/超顺磁转变的可能改变,还因为两种材料的低毒性所导致的系统生物相容性。因此,它是生物医学应用如药物递送或生物医学靶向的有希望的候选者。

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