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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Sublinear dispersive conductivity in polymethyl methacrylate at temperatures above the glass transition
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Sublinear dispersive conductivity in polymethyl methacrylate at temperatures above the glass transition

机译:高于玻璃化转变温度的聚甲基丙烯酸甲酯中的亚线性分散电导率

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摘要

Dynamic electrical analysis shows that conductivity conditions the electrical properties of a polymer at high temperatures and low frequencies.In this paper we show the possibilities of the electric modulus formalism to study the properties of carrier transport and space charge relaxation processes in polymethyl methacrylate.Asymmetric Argand's plots are observed in the temperature range between 150 and 210 deg C.This asymmetry is related to power-law dependencies in the real part of the conductivity,of the form omega~n with n<1,as a result of correlated ion hopping.The complex part of the electric modulus exhibits a peak in the low frequency range that can be associated with these conductive processes.In the case of the relaxation time related to conductive processes,it has been observed that Maxwell time is higher than the characteristic time associated with the crossover frequency which determines the transition from dc to ac regime.This fact is explained by the presence of deep traps.Finally,a maximum in the value of n is observed between 180 and 190 deg C which may be related to coupling between charge transport and chain segment motions.
机译:动态电分析表明,电导率决定了聚合物在高温和低频下的电性能。在本文中,我们展示了电模量形式学研究聚甲基丙烯酸甲酯中载流子传输和空间电荷弛豫过程的性能的可能性。在150到210摄氏度之间的温度范围内观察到曲线。这种不对称与电导率实部中的幂律相关性有关,这是相关离子跳变的结果,Ω形式为n <1。电模量的复数部分在低频范围内会出现一个峰值,这些峰值可能与这些导电过程有关。在与导电过程有关的弛豫时间的情况下,已观察到麦克斯韦时间大于相关的特征时间交叉频率决定了从直流到交流的过渡。 ps。最后,在180到190摄氏度之间观察到n的最大值,这可能与电荷传输和链段运动之间的耦合有关。

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