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可重构铁磁液滴。

Reconfigurable ferromagnetic liquid droplets.

机构信息

Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

出版信息

Science. 2019 Jul 19;365(6450):264-267. doi: 10.1126/science.aaw8719.

Abstract

Solid ferromagnetic materials are rigid in shape and cannot be reconfigured. Ferrofluids, although reconfigurable, are paramagnetic at room temperature and lose their magnetization when the applied magnetic field is removed. Here, we show a reversible paramagnetic-to-ferromagnetic transformation of ferrofluid droplets by the jamming of a monolayer of magnetic nanoparticles assembled at the water-oil interface. These ferromagnetic liquid droplets exhibit a finite coercivity and remanent magnetization. They can be easily reconfigured into different shapes while preserving the magnetic properties of solid ferromagnets with classic north-south dipole interactions. Their translational and rotational motions can be actuated remotely and precisely by an external magnetic field, inspiring studies on active matter, energy-dissipative assemblies, and programmable liquid constructs.

摘要

固态铁磁材料形状固定,无法重新配置。而在外磁场移除时,室温下的铁磁流体具有顺磁性,且会失去磁性。在这里,我们通过在油水界面组装的单层磁性纳米颗粒的缠结,展示了铁磁流体液滴从顺磁到铁磁的可逆转变。这些铁磁液体液滴表现出有限的矫顽力和剩余磁化强度。它们可以很容易地重新配置成不同的形状,同时保持具有经典南北偶极相互作用的固态铁磁体的磁性能。它们的平移和旋转运动可以通过外部磁场远程精确地驱动,这为活性物质、能量耗散组装体和可编程液体结构的研究提供了灵感。

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