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Synthesis and characterization of FeCo nanowires with high coercivity

机译:高矫顽力的FeCo纳米线的合成与表征

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Ferromagnetic FeCo nanocrystals with high coercivity have been synthesized using a reductive decomposition method. The sizes and shapes of the nanocrystals were found to be dependent on reaction parameters such as the surfactant ratio, the precursor concentration and the heating rate. Synthesized nanocrystals have a body-centered cubic crystal structure for both particles and nanowires and the (110) crystalline direction is along the long axis of the nanowires. The coercivity and magnetization of the FeCo nanocrystals are found to be dependent on morphology. Nanowires of Fe60Co40 with saturation magnetization of 92 emu g(-1) and coercive force of 1.2 kOe have been obtained in this study.
机译:使用还原分解法合成了具有高矫顽力的铁磁FeCo纳米晶体。发现纳米晶体的尺寸和形状取决于反应参数,例如表面活性剂比率,前体浓度和加热速率。合成的纳米晶体对于颗粒和纳米线都具有以体心为中心的立方晶体结构,并且(110)结晶方向是沿着纳米线的长轴。发现FeCo纳米晶体的矫顽力和磁化强度取决于形态。这项研究获得了Fe60Co40纳米线,其饱和磁化强度为92 emu g(-1),矫顽力为1.2 kOe。

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