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The formation of legume-like structures of Co nanoparticles through a polymer-assisted magnetic-field-induced assembly

机译:通过聚合物辅助磁场诱导的组装形成Co纳米颗粒的豆类结构

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摘要

A unique one-dimensional (1D) legume-like structure of cobalt nanoparticles was prepared by a simple magnetic-field-induced assembly approach with the assistance of polyvinylpyrrolidone (PVP). In each 'legume', cobalt nanoparticles were regularly aligned along the lines of magnetic force in a row with visible spacing between adjacent nanoparticles and permanently linked with PVP molecule layers in order to maintain the ordered shape after the removal of the external magnetic field. Magnetic measurement showed that these legume-like structures were superparamagnetic at room temperature, while appearing somewhat ferromagnetic at 10 K, obviously indicating magnetostatic coupling between nanoparticles at low temperature. This novel legume-like structure would provide a new model system for the study of magnetization properties of one-dimensionally ordered magnetic nanostructures.
机译:借助聚乙烯吡咯烷酮(PVP)的简单磁场诱导组装方法,制备了钴纳米颗粒的独特一维(1D)豆类样结构。在每个“豆类”中,钴纳米颗粒沿着磁力线规则排列,相邻纳米颗粒之间具有可见的间距,并与PVP分子层永久连接,以便在去除外部磁场后保持有序的形状。磁性测量表明,这些豆类结构在室温下是超顺磁性的,而在10 K下则呈现出铁磁性,这显然表明纳米颗粒之间在低温下具有静磁耦合。这种新颖的豆类状结构将为研究一维有序磁性纳米结构的磁化性质提供一个新的模型系统。

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