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利用Mn₄C抑制Mn⁻C纳米颗粒磁化的热退化及交换偏置

Beating Thermal Deterioration of Magnetization with Mn₄C and Exchange Bias in Mn⁻C Nanoparticles.

作者信息

Si Ping-Zhan, Wang Xin-You, Ge Hong-Liang, Qian Hui-Dong, Park Jihoon, Yang Yang, Li Yin-Sheng, Choi Chul-Jin

机构信息

College of Materials Science and Engineering, China Jiliang University, Hangzhou 310018, China.

Functional Nanopowders Materials Department, Korea Institute of Materials Science, Changwon 51508, Korea.

出版信息

Nanomaterials (Basel). 2018 Dec 15;8(12):1056. doi: 10.3390/nano8121056.

Abstract

The magnetization of most materials decreases with increasing temperature due to thermal deterioration of magnetic ordering. Here, we show that Mn₄C phase can compensate the magnetization loss due to thermal agitation. The Mn⁻C nanoparticles containing ferrimagnetic Mn₄C and other Mn⁻C/Mn-O phases were prepared by using the traditional arc-discharge method. A positive temperature coefficient of magnetization (~0.0026 Am² kg K) and an exchange bias up to 0.05 T were observed in the samples. We ascribe the exchange bias to the co-existence of ferrimagnetic Mn₄C/Mn₃O₄ and antiferromagnetic α-Mn(C)/MnO phases. The positive temperature coefficient of magnetization of the samples was ascribed to the presence of Mn₄C phase, which is considered as a Néel's -type ferrimagnet.

摘要

由于磁有序的热劣化,大多数材料的磁化强度会随着温度的升高而降低。在此,我们表明Mn₄C相可以补偿由于热搅动引起的磁化损失。通过传统电弧放电法制备了含有亚铁磁性Mn₄C和其他Mn⁻C/Mn⁻O相的Mn⁻C纳米颗粒。在样品中观察到了正的磁化温度系数(约0.0026 Am² kg K)和高达0.05 T的交换偏置。我们将交换偏置归因于亚铁磁性Mn₄C/Mn₃O₄和反铁磁性α-Mn(C)/MnO相的共存。样品的正磁化温度系数归因于Mn₄C相的存在,Mn₄C相被认为是一种尼尔型亚铁磁体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15a2/6316580/41e8ad7e621c/nanomaterials-08-01056-g001.jpg

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