...
首页> 外文期刊>Materials transactions >Low-Temperature Atomic Ordering of Oriented L1_0-FePtCu Nanoparticles with High Areal-Density Characterized by Transmission Electron Microscopy and Electron Diffraction
【24h】

Low-Temperature Atomic Ordering of Oriented L1_0-FePtCu Nanoparticles with High Areal-Density Characterized by Transmission Electron Microscopy and Electron Diffraction

机译:透射电子显微镜和电子衍射表征高取向密度的取向L1_0-FePtCu纳米粒子的低温原子有序化

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Oriented and densely dispersed L1_0-FePtCu nanoparticles have been directly synthesized by co-evaporation of Fe, Pt and Cu using rf-magnetron sputtering onto NaCl substrate kept at 563-613 K without any post-deposition annealing. Formation of the L1_0-type structure in the specimens fabricated as low a substrate temperature as 563 K (Fe_(40)Pt_(50)Cu_(10)) was confirmed by electron microscopy and electron diffraction, while the coercivity measured at room temperature was very low and the intensity of the superlattice reflections was quite weak. The atomic ordering was promoted in the specimen fabricated at 613 K with a composition of Fe_(37)Pt_(52)Cu_(11), resulted in a higher coercivity exceeding 1 kOe at room temperature as well as appearance of clear superlattice reflections. In addition to the evolution of atomic ordering, <100> oriented growth was enhanced as the substrate temperature increased. Particle size dependence of long-range order (LRO) is considered to be responsible for the decrease of coercivity with particle size reduction as well as thermal fluctuation of magnetization. High coercivity was obtained for specimens with Cu concentration near 10 at percent under the present sputtering condition. The LRO in the FePtCu ternary phase is considered to sensitively depend on the alloy concentration.
机译:定向和致密分散的L1_0-FePtCu纳米粒子是通过使用rf磁控溅射在保持在563-613 K的NaCl衬底上共蒸发Fe,Pt和Cu而直接合成的,无需任何沉积后退火。通过电子显微镜和电子衍射证实在低至563 K(Fe_(40)Pt_(50)Cu_(10))的低衬底温度下制造的样品中L1_0型结构的形成,而室温下测得的矫顽力为极低,超晶格反射的强度很弱。组成为Fe_(37)Pt_(52)Cu_(11)的样品在613 K下被促进了原子序,导致在室温下超过1 kOe的较高矫顽力以及清晰的超晶格反射现象。除了原子有序的演化以外,随着衬底温度的升高,<100>取向的生长得到了增强。人们认为,远距离粒度(LRO)的粒度依赖性是导致矫顽力降低,粒度减小以及磁化热波动的原因。在当前的溅射条件下,对于Cu浓度接近10 at%的样品,可以获得高矫顽力。 FePtCu三元相中的LRO被认为敏感地取决于合金浓度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号