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MAGNETIC-NANOPARTICLE-POLYMER COMPOSITES WITH ENHANCED MAGNETO-OPTICAL PROPERTIES

机译:具有增强的磁光性能的磁-纳米-聚合物复合材料

摘要

Composites, designed "MNPC" materials, are formed by methods of which an exemplary method includes preparing a liquid suspension of magnetic nanoparticles in a carrier liquid in which the nanoparticles are not soluble. The carrier liquid can form a rigid polymer matrix for the nanoparticles whenever the carrier liquid is exposed to a rigidification condition. A first rigidification condition is applied to the suspension to rigidify the carrier liquid into the polymer matrix and thus form a rigid MNPC material. A fluidizing condition is applied to the rigid MNPC material to fluidize the matrix and allow movement of the nanoparticles in the matrix. While the matrix is fluid, the MNPC material is magnetically poled by exposure to an external magnetic field. Poling aligns at least some of the nanoparticles with the field and allows at least some particles to self-assemble with each other. While continuing the magnetic poling, a second rigidification condition is applied to the MNPC material to freeze further movement of the nanoparticles in the polymer matrix. The produced materials have enhanced properties including magneto-optical properties.
机译:通过方法形成设计为“ MNPC”材料的复合材料,所述方法的示例性方法包括制备磁性纳米颗粒在不溶于纳米颗粒的载液中的液体悬浮液。每当载液暴露于硬化条件时,载液可形成用于纳米颗粒的刚性聚合物基质。将第一硬化条件应用于悬浮液以将载液硬化成聚合物基质,从而形成刚性MNPC材料。将流化条件应用于刚性MNPC材料,以使基质流化并允许纳米颗粒在基质中移动。当基质是流体时,MNPC材料通过暴露于外部磁场而被磁化。极化使至少一些纳米粒子与电场对准,并允许至少一些粒子彼此自组装。在继续磁极化的同时,将第二刚性条件施加于MNPC材料,以冻结纳米颗粒在聚合物基体中的进一步运动。所生产的材料具有增强的特性,包括磁光特性。

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