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In the present work, a series of [Fe80Ni20–O/SiO2]n multilayer thin films is fabricated using a reactive magnetron sputtering equipment. The thickness of SiO2 interlayer is fixed at 3 nm, while the thickness values of Fe80Ni20–O magnetic films range from 10 nm to 30 nm. All films present obvious in-plane uniaxial magnetic anisotropy. With increasing the Fe80Ni20–O layer thickness, the saturation magnetization increases slightly and the coercivity becomes larger due to the enlarged grain size, which could weaken the soft magnetic property. The results of high frequency magnetic permeability characterization show that films with thin magnetic layer are more suitable for practical applications. When the thickness of Fe80Ni20–O layer is 10 nm, the multilayer film exhibits the most comprehensive high-frequency magnetic property with a real permeability of 300 in gigahertz range.  相似文献   
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使用磁控溅射结合惰性气体冷凝的方法制备了Cu纳米粒子,通过将Cu纳米粒子沉积与ZnO离子束溅射原位复合的方法制得了CuNps@ZnO纳米复合薄膜,并研究了退火温度对CuNps@ZnO纳米粒子复合薄膜的结构和光学性能的影响.通过对样品的表征发现所得产物中存在着低温条件下难以形成的立方相、岩盐结构的ZnO.并且,样品的微观形貌、结晶性和光学性能随着退火温度的变化而发生显著地变化.  相似文献   
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