| Literature DB >> 31320536 |
Xubo Liu1,2, Noah Kent2,3, Alejandro Ceballos4, Robert Streubel2, Yufeng Jiang2,5, Yu Chai2,4,6, Paul Y Kim2, Joe Forth2, Frances Hellman2,7, Shaowei Shi1, Dong Wang1,8, Brett A Helms2,6, Paul D Ashby2,6, Peter Fischer2,3, Thomas P Russell9,10,11.
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.Entities:
Year: 2019 PMID: 31320536 DOI: 10.1126/science.aaw8719
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728