期刊文献+

一维NiFe1.98RE0.02O4(RE=Pr,Nd,Sm)纳米丝的结构和磁性能

Structure and Magnetic Properties of One-dimensional NiFe1.98RE0.02O4(RE=Pr, Nd, Sm) Nanowires
原文传递
导出
摘要 采用溶胶-凝胶法、静电纺丝技术和热处理技术相结合制备了一维NiFe1.98RE0.02O4 (RE=Pr,Nd,Sm)纳米丝。利用X射线衍射仪(XRD)、傅里叶变换红外光谱仪(FT-IR)、扫描电子显微镜(SEM)和振动样品磁强计(VSM)对NiFe1.98RE0.02O4 (RE=Pr,Nd,Sm)纳米丝的结构、形貌和磁性能进行表征。结果表明,NiFe1.98RE0.02O4(RE=Pr,Nd,Sm)纳米丝表面光滑、直径均匀、连续,直径约60nm。掺杂Pr3+,Nd3+,Sm3+均没有改变NiFe204的尖晶石结构,掺杂均降低了NiFe2O4的结晶度,晶粒尺寸D从44.8nm减小到33.8nm。NiFe1.98RE0.02O4 (RE=Pr,Nd,Sm)纳米丝都表现出软磁特性。NiFe1.98RE0.02O4 (RE=Pr,Nd,Sm)纳米丝的饱和磁化强度(Ms)分别为39.58,41.10,34.23 A·m^2/kg;矫顽力(Hc)分别为14119.2, 13678.4,15937.6 A/m;其中NiFe1.98Nd0.02O4纳米丝的Ms (41.10 A·m^2/kg)最大,矫顽力Hc(13678.4A/m)最小,软磁性能最好。 The one-dimensional NiFe1.98RE0.02O4(RE=Pr, Nd, Sm) nanowires have been fabricated by sol-gel method, electrospinning technique and heat treatment technology. The structure, morphology and magnetic properties of NiFe1.98RE0.02O4(RE=Pr, Nd, Sm)nanowires were characterized by X-ray diffraction(XRD), Fourier transform infrared spectroscopy(FT-IR), scanning electron microscopy(SEM) and vibrating sample magnetometer(VSM). The results show that the nanowires surface is smooth and the diameter of the nanowires is about 60 nm which is continuous and symmetrical. All samples present a pure phase spinel structure. Separate doping of Pr3+,Nd3+ and Sm3+ decreases the crystallinity of NiFe2 O4, and the grain size D decreases from 44.8 nm to 33.8 nm. NiFe1.98RE0.02O4(RE=Pr,Nd,Sm) nanowires exhibit soft ferrimagnetic behavior. The saturation magnetization(Ms) of NiFe1.98RE0.02O4(RE=Pr,Nd,Sm) nanowires are 39.58, 41.10, 34.23(A·m2)/kg, respectively;and the coercivity(Hc) of the nanowires are 176.49×80, 170.98×80, 199.22×80 A/m,respectively. Among them, NiFe1.98Nd0.02O4 nanowires have the best soft magnetic properties including the largest Ms(41.10 A·m2/kg) and the smallest Hc(170.98×80 A/m).
作者 戴剑锋 刘鹏 王青 李维学 Dai Jianfeng;Liu Peng;Wang Qing;Li Weixue(State Key Laboratory of Advanced Processing and Recycling of Nonferrous Metals,Lanzhou 730050,China;Lanzhou University of Technology,Lanzhou 730050,China)
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2019年第5期1539-1543,共5页 Rare Metal Materials and Engineering
基金 国家自然科学基金(11664023)
关键词 镍铁氧体 稀土掺杂 静电纺丝 纳米丝 磁性能 nickel ferrite rare earth substituted electrospinning nanowires magnetic properties
  • 相关文献

参考文献4

二级参考文献52

  • 1Yang, X. F.; Li, Q. L.; Zhao, J. X.; Li, B. D.; Wang, Y. F. J. Alloy. Compd. 2009, 475, 312.
  • 2Arkom, K.; Ali, G.; Liu, X. X.; Akimitsu, M. Thin Solid Films 2010, 518, 7059.
  • 3Wang, Y. F.; Li, Q. L.; Zhang, C. R.; Li, B. D. J. Magn. Magn. Mater. 20119, 321, 3368.
  • 4Mohammed, A. A.; Krishnan, V.; Bo, T. Nanoscale Res. Lett. 2011, 6, 375.
  • 5Xia, Q.; Wang, H. C.; Miao, Z. Y.; Wang, X. S.; Fang, Y. X.; Chen, Q.; Shao, X. G. Talanta 2011, 84, 673.
  • 6Li, C. J.; Wang, J. N. Mater. Lett. 2010, 64, 586.
  • 7Shen, X. Q.; Liu, M. Q.; Song, F. Z.; Meng, X. F. J. Sol-Gel. Sci. Technol. 2010, 53, 448.
  • 8Fang, Z. B.; Yan, Z. J.; Tan, Y. S.; Liu, X. Q.; Wang, Y. Y. Appl. Surf. Sci. 2005, 241,303.
  • 9Morel, A.; Le Breton, J. M.; Kreisel, J.; Wiesinger, G.; Kools, F.; Tenaud, P. ,I. Magn. Magn. Mater. 20112, 242-245, 1405.
  • 10Lechevallier, L.; Le Breton, J. M.; Wang, J. F.; Harris, I. R. J.. Phys. -Condens. Mat. 2004, 16, 5359.

共引文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部