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尖晶石铁氧体TixNi1-xFe2O4中阳离子分布和Ti离子磁矩的实验研究∗

徐静 齐伟华 纪登辉 李壮志 唐贵德 张晓云 尚志丰 朗莉莉

物理学报Issue(1):1-11,11.
物理学报Issue(1):1-11,11.DOI:10.7498/aps.64.017501

尖晶石铁氧体TixNi1-xFe2O4中阳离子分布和Ti离子磁矩的实验研究∗

Study on cation distribution and magnetic moment of Ti ions in spinel ferrites Ni1-xTixFe2O4

徐静 1齐伟华 2纪登辉 1李壮志 1唐贵德 3张晓云 1尚志丰 1朗莉莉1

作者信息

  • 1. 河北省新型薄膜材料实验室,河北师范大学物理科学与信息工程学院,石家庄 050024
  • 2. 河北工程大学理学院,邯郸 056038
  • 3. 六盘水师范学院物理与电子科学系,六盘水 553004
  • 折叠

摘要

Abstract

Spinel ferrite samples TixNi1−xFe2O4 (x = 0, 0.1, 0.2, 0.3, 0.4) were prepared using conventional solid reaction method. The sample exhibit a single-phase cubic spinel structure with a space group obtained F d¯3m. The lattice parameter a increases with the increase of Ti doping level x. But the specific saturation magnetizations, σs, gradually decrease with increasing Ti doping level x at 10 K and 300 K. It is interesting that when the doping level x>0.2, two transition temperatures, TL and TN, are found: when the temperature is lower than TN, the magnetization is obviously decreased, while at the temperature TL, dσ/dT reaches a maximum value. This phenomenon indicates that an additional antiferromagnetic structure arises in the traditional spinel phase of ferrites which results from Ti doping, that Ti ions will show the form of Ti3+ and Ti2+ cations which have magnetic moments, and that the magnetic moments of the Ti cations are opposite to those of the Fe and Ni cations. The dependence of the magnetic moments of the samples on the Ti doping level x at 10 K was fitted successfully using the quantum-mechanical potential barrier model proposed earlier by our group. In the fitting process, the distributions of Ti, Ni and Fe cations in the samples are obtained. It is found that 80%of the Ti cations will occupy the [B] sites in Ti2+ form.

关键词

尖晶石铁氧体/晶体结构/磁性

Key words

spinel ferrite/crystal structure/magnetic properties

引用本文复制引用

徐静,齐伟华,纪登辉,李壮志,唐贵德,张晓云,尚志丰,朗莉莉..尖晶石铁氧体TixNi1-xFe2O4中阳离子分布和Ti离子磁矩的实验研究∗[J].物理学报,2015,(1):1-11,11.

基金项目

国家自然科学基金(批准号:11174069)和河北省教育厅青年基金(批准号:QN20131008)资助的课题.* Project supported by the National Natural Science Foundation of China (Grant No.11174069), and the Young scholar Science Foundation of the Education Department of Hebei Province, China (Grant No. QN20131008) (批准号:11174069)

物理学报

OA北大核心CSCDCSTPCDSCI

1000-3290

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