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article · Physica B Condensed Matter

Variation of the general mixing rule to explore the interphase in the AC electrical conductivity of polypropylene melt-mixed with as-grown carbon nanofiber composites

20254 citationsOpen accessIbn Tofail University

Abstract

A variation of the phenomenological mixing rule model is used to study the AC electrical conductivity of melt-extruded polypropylene (PP) compounds with varying carbon nanofibre (CNF) contents (0 to 1.4 vol. %). The results show an insulator-conductor transition at 0.9 vol. % CNF content, where the conductivity reaches ∼ 4 × 10 -8 S m -1 at 430 Hz, while at the highest CNF loading of 1.4 vol. % increases up to ∼ 6 × 10 -6 S m -1 , which makes them suitable as electrostatic dissipative (ESD) materials. From the modified mixing rule model, it is shown that the electrical conductivity ( σ int ) and the volume constant ( k ), associated with the interphase, increase and decrease with the frequency, respectively, while the volume concentration of the interphase ( ϕ int ), despite increasing linearly with increasing vol. % of CNFs, decreases as frequencies increase, demonstrating that its effect becomes smaller as the frequency increases.

Research topics

  • Advanced Sensor and Energy Harvesting Materials
  • Carbon Nanotubes in Composites
  • Conducting polymers and applications

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DOI: 10.1016/j.physb.2025.417420

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