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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Multishelled Co3O4-Fe3O4 hollow spheres with even magnetic phase distribution: Synthesis, magnetic properties and their application in watertreatment
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Multishelled Co3O4-Fe3O4 hollow spheres with even magnetic phase distribution: Synthesis, magnetic properties and their application in watertreatment

机译:磁性相分布均匀的多壳Co3O4-Fe3O4空心球的合成,磁性及其在水处理中的应用

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摘要

Nowadays, despite the success evidenced in synthesis of hybrid materials, spherical hybrid materials are usually based on core-shell structures or alloy-like ensembles with homogenous distribution of all components. For core-shells, the performance of a core part is usually hampered due to a thick shell, and alloy-like ensembles commonly have low surface area. Therefore, the synthesis of hybrid multishelled hollow materials with both even phase distribution and well-ordered building blocks, may be a better choice. In this paper, we developed a new method to successfully fabricate Co3O4-Fe3O4 materials with the above ideal structure. As-prepared Co3O4-Fe3O4 products have definite structural advantages. Therefore, these Co3O4-Fe3O4 products not only exhibit excellent ability in waste-water treatment applications, but are also feasible for the fast recyclable treatment via a simple magnetic separation. In addition, they also show interesting structure-dependent magnetic properties and could serve as a model material for a heterogeneous antiferromagnet/ferromagnet system without clear/sharp interfaces. Needless to say, our newly developed synthetic approach may be extended toward the synthesis of other hybrid materials with even functional phase distribution.
机译:如今,尽管在混合材料的合成方面取得了成功,但球形混合材料通常基于核-壳结构或类似合金的集合体,其所有组分均一分布。对于核壳,通常由于壳厚而妨碍核部分的性能,并且合金状的集合体通常具有较低的表面积。因此,合成具有均匀相分布和有序结构单元的杂化多壳空心材料可能是一个更好的选择。在本文中,我们开发了一种成功制造具有上述理想结构的Co3O4-Fe3O4材料的新方法。制备的Co3O4-Fe3O4产品具有一定的结构优势。因此,这些Co3O4-Fe3O4产品不仅在废水处理应用中表现出出色的能力,而且对于通过简单的磁分离进行快速可回收处理也是可行的。此外,它们还显示出令人感兴趣的与结构相关的磁性能,并且可以用作没有清晰/清晰界面的异质反铁磁体/铁磁体系统的模型材料。不用说,我们新开发的合成方法可能会扩展到具有均匀功能相分布的其他杂化材料的合成。

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