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Flexible Chains of Ferromagnetic Nanoparticles

机译:铁磁纳米粒子的柔性链

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We report the fabrication of flexible chains of ferromagnetic Ni nanoparticles that possess the ability to adapt other than the typically observed rigid (nearly) straight configurations in the absence of an external magnetic field. The dynamic mobility of the ferromagnetic chains originates from a layer of densely grafted polyethylene glycol macromolecules enveloping each nanoparticle in the chain. While ferromagnetic chains of unmodified Ni nanoparticles behave as stiff nickel nanorods, the chains made of the grafted nanoparticles demonstrate extreme flexibility. Upon changing the direction of the field, and inevitably going through a zero-field point, the shorter chains undergo chain-globule-chain transformation. The longer chains can bend to a high degree, attaining "snake-like" configurations.
机译:我们报告了铁磁性镍纳米粒子的柔性链的制造,该柔性链具有在没有外部磁场的情况下除了通常观察到的刚性(几乎)笔直构型以外的适应能力。铁磁链的动态迁移性源自包裹在链中每个纳米粒子的一层紧密接枝的聚乙二醇大分子。尽管未修饰的镍纳米粒子的铁磁链表现为坚硬的镍纳米棒,但由接枝的纳米粒子制成的链却表现出极高的柔韧性。在改变场的方向时,不可避免地要经过零场点,较短的链会经历链-球-链变换。较长的链可以高度弯曲,从而达到“蛇形”的构型。

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