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Deposition feature of Ni nanoparticles on halloysite template and magnetic properties of the composite

机译:Ni纳米颗粒在埃洛石模板上的沉积特征及其磁性能。

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摘要

A novel cermet composite with Ni nanoparticles deposited on a hollow cylindrical halloysite template is fabricated by electroless plating. Ni nanoparticles have a uniform distribution on the template, and their average diameter is mainly in the range of 20-30 nm. The halloysite template will be beneficial to make the Ni nanoparticles achieve high stability and well-dispersed state. Different heat treatment temperatures have a great effect on the crystal structure of Ni nanoparticles and the magnetic properties of the composite. With the heat-treated temperature increase, Ni nanoparticles gradually become crystallized, and the composite values of inherent coercive force (iHc), saturated magnetization (Ms), and residual magnetization (Mr) increase respectively. After complete crystallization of Ni nanoparticles at 673 K, the composite has the maximum values of iHc (253.6 Oe), MS (57.37 emu/g), and Mr (21.64 emu/g). The sum contribution of the magneto-crystal line anisotropy, single magnetic domain effect, and the pinning effect of multiple-twinned planar defects in Ni nanoparticles would result in the high value of Me. The new nanosized cermet composite will be at such an advantage for its practicable fabrication method, higher coercive force, high stability, and low cost that it would have great potential to be utilized to design and prepare magnetic materials.
机译:通过化学镀方法制备了一种新型的金属陶瓷复合材料,其中Ni纳米颗粒沉积在空心圆柱形埃洛石模板上。 Ni纳米颗粒在模板上具有均匀的分布,并且其平均直径主要在20-30nm的范围内。埃洛石模板将有利于使Ni纳米粒子达到高稳定性和良好的分散状态。不同的热处理温度对镍纳米粒子的晶体结构和复合材料的磁性能有很大影响。随着热处理温度的升高,Ni纳米颗粒逐渐结晶,固有矫顽力(iHc),饱和磁化强度(Ms)和残余磁化强度(Mr)的复合值分别增加。 Ni纳米粒子在673 K下完全结晶后,复合材料的最大值为iHc(253.6 Oe),MS(57.37 emu / g)和Mr(21.64 emu / g)。 Ni纳米粒子中磁晶线各向异性,单磁畴效应和多重孪晶平面缺陷的钉扎效应的总贡献将导致Me值较高。新型纳米金属陶瓷复合材料将以其实用的制造方法,更高的矫顽力,高稳定性和低成本而具有这样的优势,使其具有很大的潜力可用于设计和制备磁性材料。

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