首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Preparation of Highly Anisotropic Cobalt Ferrite/Silica Microellipsoids Using an External Magnetic Field
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Preparation of Highly Anisotropic Cobalt Ferrite/Silica Microellipsoids Using an External Magnetic Field

机译:利用外磁场制备高各向异性钴铁氧体/二氧化硅微椭球体

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摘要

Magnetic cobalt ferrite/silica microparticles having both an original morphology and an anisotropic nanostructure are synthesized through the use of an external magnetic field and nanoparticles characterized by a high magnetic anisotropy. The association of these two factors implies that the ESE (emulsion and solvent evaporation) sol- gel method employed here allows the preparation of silica microellipsoids containing magnetic nanoparticles aggregated in large chains. It is clearly shown that without this combination, microspheres characterized by an isotropic distribution of the magnetic nanoparticles are obtained. While the chaining of the cobalt ferrite nanoparticles inside the silica matrix is related to the increase of their magnetic dipolar interactions, the ellipsoidal shape of the microparticles may be explained by the elongation of the sol droplets in the direction of the external magnetic field during the synthesis. Because of their highly anisotropic structure, these microparticles exhibit permanent magnetic moments, which are responsible, at a larger scale, for the existence of strong magnetic dipolar interactions. Therefore, when they are dispersed in water, the microellipsoids self-assemble into large and irregular chains. These interactions can be reinforced by the use of external magnetic field, allowing the preparation of very large permanent chains. This research illustrates how nanostructured particles exhibiting complex architectures can be elaborated through simple, fast, and low-cost methods, such as the use of external fields in combination with soft chemistry.
机译:通过使用外部磁场和具有高磁各向异性的纳米颗粒,合成了具有原始形态和各向异性纳米结构的磁性钴铁氧体/二氧化硅微粒。这两个因素的联系意味着,此处采用的ESE(乳液和溶剂蒸发)溶胶-凝胶法可制备包含微颗粒的大分子聚集的二氧化硅微椭圆体。清楚地表明,没有这种结合,就获得了以磁性纳米颗粒的各向同性分布为特征的微球。虽然二氧化硅基质中钴铁氧体纳米颗粒的链状化与其磁偶极相互作用的增加有关,但微粒的椭圆形可以通过合成过程中溶胶液滴在外部磁场方向上的伸长来解释。由于它们的高度各向异性的结构,这些微粒表现出永久的磁矩,这些磁矩在更大程度上负责强磁性偶极相互作用的存在。因此,当它们分散在水中时,微椭球体会自组装成大而规则的链。通过使用外部磁场可以增强这些相互作用,从而可以制备非常大的永久链。这项研究表明,如何通过简单,快速和低成本的方法(例如结合使用外部场和软化学方法)来修饰具有复杂结构的纳米结构颗粒。

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