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弱铁磁性NiAlO中非重叠小极化子隧穿传导耦合介电弛豫

Non-overlapping small polaron tunneling conduction coupled dielectric relaxation in weak ferromagnetic NiAlO.

作者信息

Karmakar S, Behera D

机构信息

Department of Physics and Astronomy, National Institute of Technology Rourkela, Rourkela 769008, Odisha, India.

出版信息

J Phys Condens Matter. 2019 Jun 19;31(24):245701. doi: 10.1088/1361-648X/ab03f0. Epub 2019 Feb 1.

Abstract

The inverse spinel nickel aluminate micro-particles was successfully synthesized via solid-state synthesis techniques. The single phase cubic structure with space group Fd3m of the as-prepared sample was entrenched from Rietveld refinement of x-ray diffraction pattern. In addition, the photoluminescence (PL) and FTIR spectra were also performed to give strong evidence of its pure phase formation. The narrow hysteresis m-h loop and UV-DRS spectra at room temperature demonstrate its weak ferromagnetic and semiconducting nature with saturation magnetization 64.96  ×  10 emu gm and direct optical band gap 2.03 eV respectively. The high-resolution FESEM micrographs and EDS elemental analysis exhibit its grain growth in µm range (217 µm) and presence of elemental compound Ni, Al and O respectively. The electrical transport properties were accomplished by complex impedance spectroscopy as a function of frequency (100 Hz-1 MHz) with the evolution of high temperature (300 °C-500 °C). The Nyquist plots (Z″ versus Z') were well fitted with an equivalent circuit model (QR) (QR) consisting of a series combination of intra and inter-granular contribution. Furthermore, the imaginary modulus spectra were also fitted with Kohlrausch-Williams-Watts (KWW) function, which represents two thermally activated peaks of grain and grain boundary effects. The low-frequency dispersive ac conductivity was elucidated using the following equation: [Formula: see text]. The increasing nature of temperature dependent frequency exponent (n) suggests the quantum mechanical tunneling: non-overlapping small polaron tunneling (NSPT) concept for conduction mechanism. In low-frequency region, the lattice and charge carrier polarization simultaneously contribute in dielectric permittivity.

摘要

通过固态合成技术成功合成了反尖晶石镍铝酸盐微粒。通过对X射线衍射图谱进行Rietveld精修,确定了所制备样品具有空间群Fd3m的单相立方结构。此外,还进行了光致发光(PL)和傅里叶变换红外光谱(FTIR)分析,有力地证明了其纯相的形成。室温下狭窄的磁滞m-h回线和紫外可见漫反射光谱(UV-DRS)表明其具有弱铁磁性和半导体性质,饱和磁化强度分别为64.96×10 emu/gm,直接光学带隙为2.03 eV。高分辨率场发射扫描电子显微镜(FESEM)微观图像和能谱分析(EDS)分别显示其晶粒在微米范围内生长(217 µm)以及元素化合物Ni、Al和O的存在。通过复阻抗谱研究了在高温(300 °C - 500 °C)下随频率(100 Hz - 1 MHz)变化的电输运性质。奈奎斯特图(Z″对Z')与由晶内和晶间贡献的串联组合组成的等效电路模型(QR)(QR)拟合良好。此外,虚部模量谱也用科尔劳施 - 威廉姆斯 - 瓦特(KWW)函数拟合,该函数代表了晶粒和晶界效应的两个热激活峰。低频色散交流电导率用以下公式阐明:[公式:见原文]。温度依赖频率指数(n)的增加性质表明了传导机制的量子力学隧穿:非重叠小极化子隧穿(NSPT)概念。在低频区域,晶格和电荷载流子极化同时对介电常数有贡献。

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