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Magnetic dipolar interaction induced cobalt nanowires

机译:磁偶极相互作用诱导的钴纳米线

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The dipolar interaction of magnetic nanoparticles is of intense interest to engineer material self-assembly for anisotropic functional nanostructures. Here we report the solution synthesis of cobalt nanowires, where the one-dimensional nanowire formation is ultimately dependent on the magnetic dipolar interaction to realize in. situ assembly of cobalt nanoparticles. The morphology transition of cobalt nanostructures is well controlled via the ligand-free synthesis and thermal decomposition of zero-valent cobalt precursor. This study provides a self-assembly approach to the development of anisotropic cobalt nanostructures and a better understanding of nucleation parameters, which are demonstrated to correlate strongly with the size and morphology of final cobalt nanowires. This approach may be extended to other magnetic materials for the control of their nanostructure and magnetic performance.
机译:磁性纳米粒子的偶极相互作用对于设计各向异性功能纳米结构的材料自组装引起了极大的兴趣。在这里,我们报告了钴纳米线的溶液合成,其中一维纳米线的形成最终取决于磁偶极相互作用,以实现钴纳米粒子的原位组装。钴纳米结构的形态转变可通过零价钴前体的无配体合成和热分解来很好地控制。这项研究为各向异性钴纳米结构的发展提供了一种自组装方法,并且对成核参数有了更好的理解,这些参数与最终钴纳米线的尺寸和形态密切相关。该方法可以扩展到其他磁性材料以控制其纳米结构和磁性性能。

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