【2h】

Biaxial ferromagnetic liquid crystal colloids

机译:双轴铁磁液晶胶体

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摘要

The design and practical realization of composite materials that combine fluidity and different forms of ordering at the mesoscopic scale are among the grand fundamental science challenges. These composites also hold a great potential for technological applications, ranging from information displays to metamaterials. Here we introduce a fluid with coexisting polar and biaxial ordering of organic molecular and magnetic colloidal building blocks exhibiting the lowest symmetry orientational order. Guided by interactions at different length scales, rod-like organic molecules of this fluid spontaneously orient along a direction dubbed “director,” whereas magnetic colloidal nanoplates order with their dipole moments parallel to each other but pointing at an angle to the director, yielding macroscopic magnetization at no external fields. Facile magnetic switching of such fluids is consistent with predictions of a model based on competing actions of elastic and magnetic torques, enabling previously inaccessible control of light.
机译:结合流动性和介观尺度上不同形式的有序化的复合材料的设计和实际实现是重大的基础科学挑战。这些复合材料还具有广泛的技术应用潜力,从信息显示到超材料。在这里,我们介绍一种流体,其有机分子和磁性胶体结构单元的极性和双轴顺序并存,且对称取向顺序最低。在不同长度尺度上的相互作用的引导下,这种流体的棒状有机分子自发地沿被称为“方向”的方向取向,而磁性胶体纳米板的偶极矩彼此平行但与指向矢成一定角度,从而产生宏观在没有外部磁场的情况下磁化。此类流体的便捷磁转换与基于弹性和磁转矩的竞争作用的模型预测相一致,从而实现了以前无法控制的光。

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