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Effect of the TiN content in the Pd-TiN seed layer on the microstructure and magnetic properties of Co/Pd muitilayered media

机译:PD-锡种子层中锡含量对CO / Pd Muitiliday介质的微观结构和磁性性能的影响

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[Co(0.2 nm)/Pd(0.8 nm)]_(20) multilayered films on 15 nm Pd-TiN seed layers were fabricated by dc magnetron sputtering without heating the substrate. The effects of TiN content on microstructure and magnetic properties of the [Co/Pd] multilayered media were studied. By increasing the TiN content in the Pd-TiN seed layer to an optimum level, coercivity of the [Co/Pd] multilayered media increased to 6.7 kOe. However, further increase of TiN content beyond 22 vol % reduced coercivity (Hc), implying that there exists a critical TiN concentration to enhance the magnetic property of the [Co/Pd] multilayered media. Transmission electron microscopic observations revealed that well-isolated [Co/Pd] multilayered grains with apparent grain boundaries were achieved by controlling the TiN content in the Pd-TiN seed layer. The average grain diameter was 8 nm with a dispersion of 11.2%, grown on the Pd-TiN seed layer with TiN content of 22 vol %.
机译:[CO(0.2nm)/ pd(0.8nm)] _(20)通过DC磁控溅射制造15nM PD-TIN种子层上的多层薄膜,而不加热基板。研究了锡含量对[CO / Pd]多层培养基的微观结构和磁性的影响。通过将PD-TIN种子层中的锡含量增加到最佳水平,[CO / Pd]多层介质的矫顽力增加到6.7koe。然而,进一步增加了超过22体积%的渗透率(HC)的锡含量(HC),这意味着存在临界锡浓度以增强[CO / Pd]多层介质的磁性。透射电子显微镜观察显示,通过控制PD-TIN种子层中的锡含量,实现了具有表观晶界的良好溶液的多层晶粒。平均粒径为8nm,分散体为11.2%,在PD锡种子层上生长,锡含量为22体积%。

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