Masoud Mamdouh S, Shaker Medhat A, Ali Alaa E
Chemistry Department, Faculty of Science, Alexandria University, Alexandria, Egypt.
Spectrochim Acta A Mol Biomol Spectrosc. 2006 Sep;65(1):127-32. doi: 10.1016/j.saa.2005.09.036. Epub 2006 Feb 2.
The temperature dependent dielectric spectroscopic properties of two heteronuclear complexes of monoethanolamine (MEA) at a wide temperature range (303-413 K) were investigated by impedance spectroscopy, in the frequency range from 100 Hz to 100 kHz. The frequency dependence of the impedance spectra plotted in the complex plane shows semi-circles. The Cole-Cole diagrams have been used to determine the molecular relaxation time, tau. The temperature dependence of tau is expressed by thermally activated process. Relaxation frequencies corresponding to the rotation of the molecules about their long axes are expected to lie above 10 MHz and exhibit Arrhenius behavior, where a single slope is observed with activation energy values equal to 0.67 and 0.78 eV. The ac conductivity sigma(ac) (omega) is found to vary as omega(s) with the index s<or=1, indicating a dominant hopping process at low temperatures. The dielectric permittivity dependence as a function of frequency and temperature have been determined and showed a strong dispersion at frequency lower than 10 kHz. Capacitance and losses, tandelta, decreased with increasing frequency and increased with increasing temperature. The analysis of the data reveals that such characteristics are in good agreement with semi-conducting features based mainly on the hopping mechanism.
通过阻抗谱研究了单乙醇胺(MEA)的两种异核配合物在宽温度范围(303 - 413 K)内、频率范围从100 Hz至100 kHz时的温度依赖性介电光谱特性。在复平面上绘制的阻抗谱的频率依赖性呈现出半圆。已使用Cole - Cole图来确定分子弛豫时间tau。tau的温度依赖性由热激活过程表示。预计对应于分子绕其长轴旋转的弛豫频率高于10 MHz并呈现Arrhenius行为,在此观察到单一斜率,激活能值分别为0.67和0.78 eV。发现交流电导率sigma(ac)(omega)随omega(s)变化,指数s≤1,表明在低温下主导的跳跃过程。已确定介电常数随频率和温度的依赖性,并显示在低于10 kHz的频率处有强烈色散。电容和损耗tandelta随频率增加而降低,随温度升高而增加。数据分析表明,这些特性与主要基于跳跃机制的半导体特征高度吻合。