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首页> 外文期刊>Angewandte Chemie >Room-Temperature, Strain-Tunable Orientation of Magnetization in a Hybrid Ferromagnetic Co Nanorod-Liquid Crystalline Elastomer Nanocomposite
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Room-Temperature, Strain-Tunable Orientation of Magnetization in a Hybrid Ferromagnetic Co Nanorod-Liquid Crystalline Elastomer Nanocomposite

机译:混合铁磁Co纳米棒-液状结晶弹性体纳米复合材料中的室温,可调谐磁化取向。

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摘要

Hybrid nanocomposites based on magnetic nanoparticles dispersed in liquid crystalline elastomers are fascinating emerging materials. Their expected strong magneto-elastic coupling may open new applications as actuators, magnetic switches, and for reversible storage of magnetic information. We report here the synthesis of a novel hybrid ferromagnetic liquid crystalline elastomer. In this material, highly anisotropic Co nanorods are aligned through a cross-linking process performed in the presence of an external magnetic field. We obtain a highly anisotropic magnetic material which exhibits remarkable magneto-elastic coupling. The nanorod alignment can be switched at will at room temperature by weak mechanical stress, leading to a change of more than 50% of the remnant magnetization ratio and of the coercive field.
机译:基于分散在液晶弹性体中的磁性纳米粒子的杂化纳米复合材料是令人着迷的新兴材料。他们预期的强磁弹性耦合可能会开辟新的应用领域,如执行器,磁性开关以及可逆地存储磁性信息。我们在这里报告了新型杂化铁磁液晶弹性体的合成。在这种材料中,高度各向异性的Co纳米棒通过在外部磁场存在下进行的交联过程进行排列。我们获得了显示出显着的磁弹耦合的高度各向异性的磁性材料。可以通过弱的机械应力在室温下随意切换纳米棒的排列,从而导致剩余磁化率和矫顽场的变化超过50%。

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