金属/聚合物/金属结构中电荷转移过程的阻抗分析

M.S. Ishmukhametov, N.S. Bulankin, V.R. Karimov, A. F. Galiev
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引用次数: 0

摘要

该研究致力于对聚芳基酞酸酯--聚(二苯基酞酸酯)类电活性聚合物薄膜中的电荷转移过程进行实验研究。这项研究采用了聚合物薄膜阻抗分析方法。使用其他方法,如热刺激法、光学光谱法等,对这种材料进行了很好的研究。然而,频率测量主要是在确定电容-电压特性的领域进行的。既然聚合物具有电活性,我们就应该期望找出与交变场模式下电荷转移有关的特征。在这方面,这项研究在 0.1 至 106 Hz 的频率范围内对聚(二苯基酞)薄膜进行了阻抗分析。通常情况下,在阻抗分析中,除了交流场外,还要在金属/聚合物/金属结构上施加一个小的直流偏置电压。这样,在研究多层薄膜时,就可以获得有关表面极化、电荷载流子迁移率和麦克斯韦尔-瓦格纳效应的数据。不过,考虑到所研究材料的电活动,即使在交变电场中进行阻抗分析,但有效电压范围为 0.1 至 10 V,也能评估薄膜行为的一些电物理特性。研究发现,阻抗曲线的斜率取决于电荷载体在聚合物薄膜中的传输机制。当电压从 0.1 V 增加到 10 V 时,可以观察到曲线斜率的增加。随着有效电压幅度的增加,电荷载流子的传输机制从欧姆模式过渡到受陷阱限制的注入模式。当电压达到 2 V 时,观察到陷阱完全充满的模式,因此电压的增加不再影响频率响应的斜率。我们绘制了过渡频率 fc 与电压的关系曲线。该频率对应于阻抗从有源分量占主导地位向无源分量占主导地位的过渡。在这里,可以观察到外加电压的指数依赖性,这也表明电荷载流子在聚合物薄膜中的传输机制取决于电压(电场)。
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IMPEDANCE ANALYSIS OF CHARGE TRANSFER PROCESSES IN A METAL/POLYMER/METAL STRUCTURE
The reaserch is devoted to the experimental study of charge transfer processes in thin films of an electroactive polymer from the class of polyarylene phthalides – poly (diphenylene phthalide). The method of impedance analysis of thin polymer films was used in this work. The material is quite well studied using other methods, such as thermally stimulated methods, optical spectroscopy, etc. However, frequency measurements were carried out mainly only in the field of determining capacitance-voltage characteristics. And since the polymer is electroactive, we should expect to identify features associated with charge transfer in the alternating field mode. In this regard, the work carried out an impedance analysis of thin films of poly (diphenylene phthalide) in the frequency range from 0.1 to 106 Hz. Typically, in impedance analysis, in addition to an ac field, a small DC bias voltage is applied to the metal/polymer/metal structure. This makes it possible to obtain data on surface polarization, charge carrier mobility, and the Maxwell-Wagner effect in the case of studying multilayer films. However, taking into account the electrical activity of the studied material, even impedance analysis in an alternating field, but with an effective voltage range from 0.1 to 10 V, made it possible to evaluate some of the electrophysical characteristics of the behavior of thin films. It was found that the slope of the impedance curve depends on the mechanism of transport of charge carriers in the polymer film. As the voltage increases from 0.1 to 10 V, an increase in the slope of the graph is observed. With an increase in the magnitude of the effective voltage, a transition occurs from the ohmic to the injection mechanism of transport of charge carriers limited by traps. When reaching 2 V, a mode of complete filling of the traps is observed, as a result of which an increase in voltage ceases to affect the slope of the frequency response. The dependence of the transition frequency fc on voltage has been plotted. This frequency corresponds to the transition from the predominance of the active to the reactive component of the impedance. Here, an exponential dependence on the magnitude of the applied voltage is observed, which also indicates the dependence of the mechanisms of transport of charge carriers in the polymer film on voltage (electric field).
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