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Electrical and Electronic Properties of CNT Polymer Nanocomposites

  • V. Chaitra,
  • N. Suma,
  • V. Uma

摘要

The electrical and electronic properties of carbon nanotube (CNTs) polymer nanocomposites are thoroughly examined in this study, which emphasizes the materials’ enormous potential to transform a wide range of technological applications. To achieve uniform dispersion and strong interfacial contacts, the procedures used for the production and dispersion of carbon nanotubes inside polymer matrices are explained in detail at the beginning of the paper. The effects of several production methods on the final nanocomposite structure are explored, including solution blending, melt mixing, and in situ polymerization. Clarifying the variables impacting the electrical and electronic characteristics of CNT polymer nanocomposites is the chapter's main goal. This comprises an examination of the aspect ratio, concentration, and kind of CNT (single-versus multi-walled), together with the function of the polymer matrix. The study also shows how CNT polymer nanocomposites are used more in electrical devices, sensors, and energy storage applications. To sum up, the present understanding of the electrical and electronic characteristics of carbon nanotube-polymer nanocomposites provides a guide for scholars and engineers to maneuver through this swiftly developing area. By encouraging new developments in the conception, production, and use of CNT polymer nanocomposites, the insights offered hope to promote creativity in materials science and technology.