Cao Lingxiao, Yu Dehai, Xia Zishuo, Wan Haoyu, Liu Chuanke, Yin Tao, He Zhizhu
Department of Vehicle Engineering, College of Engineering, China Agricultural University, Beijing, 100083, China.
Adv Mater. 2020 Apr;32(17):e2000827. doi: 10.1002/adma.202000827. Epub 2020 Mar 5.
It is remarkably desirable and challenging to design reconfigurable ferromagnetic materials with high electrical conductivity. This has attracted great attention due to promising applications in many fields such as emerging flexible electronics and soft robotics. However, the shape and magnetic polarity of existing ferromagnetic materials with low conductivity are both hard to be reconfigured, and the magnetization of insulative ferrofluids is easily lost once the external magnetic field is removed. A novel reconfigurable ferromagnetic liquid metal (LM) putty-like material (FM-LMP) with high electrical conductivity and transformed shape, which is prepared through homogenously mixing neodymium-iron-boron microparticles into the gallium-based LM matrix, and turning this liquid-like suspension into the solid-like putty-like material by magnetization, is reported to achieve this. The induction magnetic field of FM-LMP is mainly attributed to the magnetic alignment of the dispersed ferromagnetic microparticles, which can be conveniently demagnetized by mechanical disordering and reversibly reconfigured through microparticle realignment by applying a weak magnetic field. FM-LMP with a low fraction of microparticles can be used as printable conductive ink for paper electronics, which are further exploited for applications including magnetic switching, flexible erasable magnetic recording paper, and self-sensing paper-based soft robotics using magnetic actuation.
设计具有高电导率的可重构铁磁材料极具吸引力但也颇具挑战性。由于在新兴柔性电子学和软体机器人等众多领域有着广阔的应用前景,这一研究已引起了广泛关注。然而,现有的低电导率铁磁材料的形状和磁极都难以重构,并且一旦去除外部磁场,绝缘铁磁流体的磁化就很容易消失。据报道,一种新型的具有高电导率和可变形形状的可重构铁磁液态金属(LM)油灰状材料(FM-LMP)得以实现,它是通过将钕铁硼微粒均匀混合到镓基LM基体中,并通过磁化将这种液态悬浮液转变为固态油灰状材料而制备的。FM-LMP的感应磁场主要归因于分散的铁磁微粒的磁排列,通过机械无序化可方便地使其退磁,并通过施加弱磁场使微粒重新排列来可逆地重构。含有低比例微粒的FM-LMP可用作纸质电子产品的可印刷导电油墨,进一步用于包括磁开关、柔性可擦除磁记录纸以及使用磁驱动的自感应纸质软体机器人等应用。