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Magneto-Optical Properties of the Magnetite-Graphene Oxide Composites in Organic Solvents

机译:有机溶剂中磁铁矿 - 石墨烯氧化物复合材料的磁光性能

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摘要

Graphene oxide (GO) aqueous solutions are known to form liquid crystals that can switch in electric fields. Magnetic fields as external stimuli are inefficient toward GO because of its diamagnetic properties, and GO is known to be insoluble in most of the organic solvents. In this study, composites of GO with oleate-protected magnetite nanoparticles were prepared as stable colloid solutions in the mixed isopropanol chloroform solvents. The structure of the composite particles and the optical properties of their solutions can be controlled by the ratio of the mixing parent components. The as prepared solutions are highly responsive to external magnetic field. As the consequence, the optical transmission and the direction of light scattering can be efficiently manipulated. These systems pave the way for fabricating functional materials, such as magneto-optical switches, density-gradient materials, and micromotors. Solubility in nonpolar organic solvents broadens the scope of their potential applications.
机译:已知石墨烯氧化物(GO)水溶液形成可在电场切换的液晶。由于其抗磁性能,磁场作为外部刺激的效率低下,并且已知去的是在大多数有机溶剂中不溶于溶解。在该研究中,制备与含油保护的磁铁矿纳米颗粒的复合材料作为稳定的异丙醇氯仿溶剂中的稳定胶体溶液。复合颗粒的结构和其溶液的光学性质可以通过混合母体组分的比率来控制。作为制备的溶液对外部磁场非常敏感。结果,可以有效地操纵光学传输和光散射方向。这些系统铺平了制造功能材料的方法,例如磁光开关,密度梯度材料和微量运动器。非极性有机溶剂中的溶解度拓宽其潜在应用的范围。

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