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使用哌啶合成的FeO纳米颗粒的形状和尺寸依赖性磁性能。

Shape and Size-Dependent Magnetic Properties of FeO Nanoparticles Synthesized Using Piperidine.

作者信息

Singh Ashwani Kumar, Srivastava O N, Singh Kedar

机构信息

School of Physical Sciences, Jawaharlal Nehru University, New Delhi, 110067, India.

Department of Physics, Banaras Hindu University, Varanasi, 221005, India.

出版信息

Nanoscale Res Lett. 2017 Dec;12(1):298. doi: 10.1186/s11671-017-2039-3. Epub 2017 Apr 26.

Abstract

In this article, we proposed a facile one-step synthesis of FeO nanoparticles of different shapes and sizes by co-precipitation of FeCl with piperidine. A careful investigation of TEM micrographs shows that the shape and size of nanoparticles can be tuned by varying the molarity of piperidine. XRD patterns match the standard phase of the spinal structure of FeO which confirms the formation of FeO nanoparticles. Transmission electron microscopy reveals that molar concentration of FeCl solution plays a significant role in determining the shape and size of FeO nanoparticles. Changes in the shape and sizes of FeO nanoparticles which are influenced by the molar concentration of FeCl can easily be explained with the help of surface free energy minimization principle. Further, to study the magnetic behavior of synthesized FeO nanoparticles, magnetization vs. magnetic field (M-H) and magnetization vs. temperature (M-T) measurements were carried out by using Physical Property Measurement System (PPMS). These results show systematic changes in various magnetic parameters like remanent magnetization (Mr), saturation magnetization (Ms), coercivity (Hc), and blocking temperature (T ) with shapes and sizes of FeO. These variations of magnetic properties of different shaped FeO nanoparticles can be explained with surface effect and finite size effect.

摘要

在本文中,我们提出了一种通过氯化铁与哌啶共沉淀一步简便合成不同形状和尺寸的FeO纳米颗粒的方法。对透射电子显微镜(TEM)显微照片的仔细研究表明,通过改变哌啶的摩尔浓度可以调节纳米颗粒的形状和尺寸。X射线衍射(XRD)图谱与FeO的尖晶石结构标准相匹配,这证实了FeO纳米颗粒的形成。透射电子显微镜显示,FeCl溶液的摩尔浓度在确定FeO纳米颗粒的形状和尺寸方面起着重要作用。借助表面自由能最小化原理,可以很容易地解释受FeCl摩尔浓度影响的FeO纳米颗粒形状和尺寸的变化。此外,为了研究合成的FeO纳米颗粒的磁行为,使用物理性质测量系统(PPMS)进行了磁化强度与磁场(M-H)以及磁化强度与温度(M-T)的测量。这些结果表明,剩余磁化强度(Mr)、饱和磁化强度(Ms)、矫顽力(Hc)和阻塞温度(T)等各种磁参数随FeO的形状和尺寸发生系统性变化。不同形状的FeO纳米颗粒磁性能的这些变化可以用表面效应和有限尺寸效应来解释。

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