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首页> 外文期刊>Bulletin of Materials Science >Charge dynamics in conducting polyaniline-metal oxalate composites
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Charge dynamics in conducting polyaniline-metal oxalate composites

机译:导电聚苯胺-金属草酸酯复合材料的电荷动力学

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摘要

Polyaniline (Pani) and its metal oxalate composites (approx 10 wt. percent) of trivalent metal ions of Cr, Fe, Mn, Co and Al were synthesized by chemical oxidative polymerization technique with potassium perdisul-phate oxidant in aqueous sulphuric acid medium. These materials were characterized by UV-VIS and EPR spectral techniques. Their d.c. electrical conductivities at room temperature and also as a function of temperature (307-453 K) were measured by four-probe technique. Presence of radical cation/polaron transition was indicated by UV-VIS absorption peak and EPR signals. Further, a close correlation existed between the conductivities and EPR parameters such as line width and peak ratio, which demonstrated that both mobile and fixed spins are involved in these composites. The dependence of conductivity on temperature, when analysed graphically by VRH, GB and TC mechanisms, pointed out that VRH is the predominant charge transport mechanism in these materials.
机译:采用过氧化二钾钾氧化剂在含水硫酸介质中,通过化学氧化聚合技术,合成了Cr,Fe,Mn,Co和Al的三价金属离子聚苯胺(Pani)及其金属草酸盐复合物(约占10重量%)。这些材料通过UV-VIS和EPR光谱技术进行了表征。他们的直流电通过四探针技术测量室温下的电导率以及温度(307-453 K)的函数。自由基阳离子/极化子跃迁的存在由UV-VIS吸收峰和EPR信号指示。此外,电导率和EPR参数(如线宽和峰比率)之间存在密切相关性,这表明这些复合材料同时涉及了自旋和固定自旋。当通过VRH,GB和TC机制进行图形分析时,电导率对温度的依赖性指出,VRH是这些材料中主要的电荷传输机制。

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