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Double-walled carbon nanotube/polymer nanocomposites: Electrical properties under dc and ac fields

机译:双层碳纳米管/聚合物纳米复合材料:直流和交流电场下的电性能

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The electrical properties of the poly(methyl methacrylate:carbon nanotubes nanocomposites) have been investigated by direct current conductivity and complex impedance spectroscopy methods. The direct current conductivity results of the poly(methyl methacrylate):carbon nanotube as a nanocomposites show that the electrical conductivity property of the poly(methyl methacrylate) changes from insulating state to semiconducting state with incorporation of double wall carbon nanotube DWCNTs into insulating polymer matrix. The alternating current conductivity mechanism of the nanocomposites is controlled by the correlated barrier hopping mechanism. The correlated barrier hopping CBH model for intimate valence alternation pairs IVAP’s describes the conduction mechanism ofPMMAdoped with (1%) DWCNTs,while correlated barrier hopping CBH model for non-intimate valence alternation pairs describes the conduction mechanism of PMMA doped with (5% and 8%) DWCNTs. The real part of the complex impedance decreases with the increase of the applied frequency which revealed that the PMMA:DWCNT nanocomposites behaves like semiconducting materials. The complex impedance Nyquist plots for PMMA doped with different concentration DWCNTs over are characterized by the appearance of a single semicircular arc whose radii of curvature decreases with increasing the temperature. Cole and Cole plots show the presence of temperature dependent electrical relaxation phenomena in the PMMA:DWCNT nanocomposites.The obtained electronic parameters confirm that PMMA:DWCNTs exhibit organic semiconductor behavior.
机译:聚甲基丙烯酸甲酯:碳纳米管纳米复合材料的电性能已通过直流电导率和复阻抗谱方法进行了研究。聚甲基丙烯酸甲酯:碳纳米管作为纳米复合材料的直流电导率结果表明,通过将双壁碳纳米管DWCNT掺入绝缘聚合物基体中,聚甲基丙烯酸甲酯的电导率性质从绝缘状态变为半导电状态。纳米复合材料的交流电传导机理由相关的势垒跳跃机理控制。亲和价交替对的相关势垒跳跃CBH模型IVAP描述了掺有(1%)DWCNT的PMMA的传导机理,而亲和价跃变对的相关势垒跳跃CBH模型描述了掺杂(5%和8)的PMMA的传导机理。 %)DWCNT。复阻抗的实部随着施加频率的增加而减小,这表明PMMA:DWCNT纳米复合材料的行为类似于半导体材料。掺杂了不同浓度DWCNT的PMMA的复阻抗Nyquist图的特征是出现了一个半圆弧,其曲率半径随着温度的升高而减小。 Cole和Cole图显示了PMMA:DWCNT纳米复合材料中存在随温度变化的电弛豫现象。获得的电子参数证实PMMA:DWCNTs表现出有机半导体行为。

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