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熔融挤出聚丙烯与原生碳纳米纤维复合材料的介电谱

Dielectric spectroscopy of melt-extruded polypropylene and as-grown carbon nanofiber composites.

作者信息

Paleo A J, Samir Z, Aribou N, Nioua Y, Martins M S, Cerqueira M F, Moreira J Agostinho, Achour M E

机构信息

2C2T - Centre for Textile Science and Technology, University of Minho, Campus de Azurém, 4800-058, Guimarães, Portugal.

Laboratory of Material Physics and Subatomic, Faculty of Sciences, Ibn Tofail University, BP 242, 14000, Kenitra, Morocco.

出版信息

Eur Phys J E Soft Matter. 2021 May 28;44(5):73. doi: 10.1140/epje/s10189-021-00079-w.

Abstract

In this work, different weight contents of as-grown carbon nanofibers (CNFs), produced by chemical vapor deposition, were melt-extruded with polypropylene (PP) and their morphologic, structure and dielectric properties examined. The morphologic analysis reveals that the CNFs are randomly distributed in the form of agglomerates within the PP matrix, whereas the structural results depicted by Raman analysis suggest that the degree of disorder of the as-received CNFs was not affected in the PP/CNF composites. The AC conductivity of PP/CNF composites at room temperature evidenced an insulator-conductor transition in the vicinity of 2 wt.%, corresponding to a remarkable rise of the dielectric permittivity up to [Formula: see text] 12 at 400 Hz, with respect to the neat PP ([Formula: see text] 2.5). Accordingly, the AC conductivity and dielectric permittivity of PP/CNF 2 wt.% composites were evaluated by using power laws and discussed in the framework of the intercluster polarization model. Finally, the complex impedance and Nyquist plots of the PP/CNF composites are analyzed by using equivalent circuit models, consisting of a constant phase element (CPE). The analysis gathered in here aims at contributing to the better understanding of the enhanced dielectric properties of low-conducting polymer composites filled with carbon nanofibers.

摘要

在这项工作中,将通过化学气相沉积法制备的不同重量含量的生长态碳纳米纤维(CNF)与聚丙烯(PP)进行熔融挤出,并对其形态、结构和介电性能进行了研究。形态分析表明,CNF以团聚体的形式随机分布在PP基体中,而拉曼分析所描述的结构结果表明,在PP/CNF复合材料中,原样接收的CNF的无序度并未受到影响。PP/CNF复合材料在室温下的交流电导率在2 wt.%附近呈现出绝缘体-导体转变,这对应于在400 Hz时介电常数显著上升至12(相对于纯PP的2.5)。因此,通过幂律对PP/CNF 2 wt.%复合材料的交流电导率和介电常数进行了评估,并在簇间极化模型的框架内进行了讨论。最后,使用由恒相位元件(CPE)组成的等效电路模型对PP/CNF复合材料的复阻抗和奈奎斯特图进行了分析。此处收集的分析旨在有助于更好地理解填充有碳纳米纤维的低导电聚合物复合材料增强的介电性能。

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