高等学校化学学报 ›› 2016, Vol. 37 ›› Issue (4): 613.doi: 10.7503/cjcu20150952

• 研究论文: 无机化学 • 上一篇    下一篇

镍钴锌纳米铁氧体的制备及磁热性能

赵海涛(), 王俏, 刘瑞萍, 马瑞廷   

  1. 沈阳理工大学材料科学与工程学院, 沈阳 110159
  • 收稿日期:2015-12-16 出版日期:2016-04-10 发布日期:2016-03-22
  • 作者简介:联系人简介: 赵海涛, 女, 博士, 副教授, 主要从事复合材料研究. E-mail: zht95711@163.com
  • 基金资助:
    国家自然科学基金(批准号: 51303108)和辽宁省高等学校优秀人才支持计划项目(批准号: LJQ2014025)资助

Synthesis and Magnetocaloric Properties of Ni-Co-Zn Nano Ferrites

ZHAO Haitao*(), WANG Qiao, LIU Ruiping, MA Ruiting   

  1. School of Materials Science and Engineering, Shenyang Ligong University, Shenyang 110159, China
  • Received:2015-12-16 Online:2016-04-10 Published:2016-03-22
  • Contact: ZHAO Haitao E-mail:zht95711@163.com
  • Supported by:
    † Supported by the National Natural Science Foundation of China(No.51303108) and the Program for Liaoning Excellent Talents in University, China(No.LJQ2014025)

摘要:

以乙酰丙酮盐为前驱体, 三乙二醇为溶剂, 采用多元醇法制备了纳米Ni0.5-xCoxZn0.5Fe2O4(x=0, 0.1, 0.2, 0.3和0.4)铁氧体. 通过X射线衍射仪(XRD)、 透射电子显微镜(TEM)、 傅里叶变换红外光谱仪(FTIR)和振动样品磁强计(VSM) 等对样品的结构、 形貌和磁性能进行了表征. 结果表明, 所得纳米Ni0.5-xCoxZn0.5Fe2O4铁氧体的分散性较好, 尺寸均一. 在室温下产物的剩磁和矫顽力均较小, 表现出亚铁磁性. 纳米Ni0.3Co0.2Zn0.5Fe2O4铁氧体的饱和磁化强度达到41.34 A·m2·kg-1, 其在交变磁场中升温可达到55 ℃, 表现出较好的磁热性能.

关键词: 分散性, 多元醇法, 镍钴锌纳米铁氧体, 磁热性能

Abstract:

Ni0.5-xCoxZn0.5Fe2O4 nanoferrites(x=0, 0.1, 0.2, 0.3 and 0.4) were synthesized via polyol process using triethylene glycol as the solvent and acetylacetonate metal salts as precursors. The structure, morphology and magnetic properties of the resultant particles were characterized by means of X-ray diffraction(XRD), transmission electron microscopy(TEM), Fourier transform infrared spectrometry(FTIR) and vibrating sample magnetometry(VSM). The results show that Ni-Co-Zn nanoferrites have uniform size and good dispersibility. The monodisperse Ni0.5-xCoxZn0.5Fe2O4 nanoferrites show a typical ferrimagnetic behavior at room temperature. The Ni0.3Co0.2Zn0.5Fe2O4 nanoferrites have maximum saturation magnetization of 41.34 A·m2·kg-1. The temperature of Ni0.3Co0.2Zn0.5Fe2O4 nano ferrites suspension can reach up to 55 ℃ in alternating magnetic field, which reveals its sufficient magnetocaloric properties.

Key words: Dispersibility, Polyol process, Ni-Co-Zn Nano ferrite, Magnetocaloric property

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