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DC and AC conductivity and dielectric properties of the metal-radical compound: Aquabis(2-dimethylaminomethyl-4-NIT-phenolato)copper(II)

机译:金属自由基化合物的直流和交流电导率和介电性能:水双(2-二甲氨基甲基-4-NIT-酚)铜(II)

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摘要

The AC and DC conductivity and dielectric properties of the crystalline metal-radical compound aquabis(2-dimethylaminomethyl-4-NIT-phenolato)copper(II) have been investigated. The DC electrical measurements show that the compound is a typical semiconductor with moderate activation energy E-a = 0.56 eV and at room conductivity sigma(25) = 1.38 X 10(-6)S cm(-1) as its electrical conductivity increases with increasing temperature. The AC conductivity of the sample is found to be proportional to omega(s). The temperature dependence of both the AC conductivity and the frequency exponent s is reasonably well interpreted in terms of the correlated barrier hopping model. The dielectric properties have been investigated as a function of frequency and temperature. Values of the dielectric constant epsilon' and dielectric loss epsilon" were found to decrease with frequency and increase with temperature. The effect of different temperatures on the AC conductivity and dielectric properties was also investigated. The AC conductivity and values of the dielectric constant increase with increasing temperature. (C) 2003 Elsevier Ltd. All rights reserved. References: 24
机译:研究了结晶金属自由基化合物水[双(2-二甲氨基甲基-4-NIT-酚)]铜(II)的交流和直流电导率和介电性能.直流电学测量表明,该化合物是一种典型的半导体,其活化能 E-a = 0.56 eV,室内电导率 sigma(25) = 1.38 X 10(-6)S cm(-1),其电导率随温度升高而增加。发现样品的交流电导率与欧米茄成正比。交流电导率和频率指数 s 的温度依赖性在相关势垒跳跃模型方面得到了合理的解释。已经研究了介电特性与频率和温度的函数关系。介电常数ε和介电损耗ε“值随频率减小,随温度升高。研究了不同温度对交流电导率和介电性能的影响。交流电导率和介电常数值随温度升高而增加。(C) 2003 爱思唯尔有限公司保留所有权利。[参考文献: 24]

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