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Fine Tuning of Electrical Transport and Dielectric Properties of Epoxy/Carbon Nanotubes Composites via Magnesium Oxide Additives. | LitMetric

AI Article Synopsis

  • The study explores the dielectric properties of epoxy composite materials enhanced with fixed amounts of multi-walled carbon nanotubes (MWCNT) and varying concentrations of magnesium oxide (MgO) nanoparticles.
  • The results showed that adding up to 2 vol.% of MgO significantly increased the direct current (DC) conductivity compared to composites without MgO, with an optimal concentration of 0.46 vol.% leading to notable conductivity improvements.
  • The findings suggest that manipulating MgO concentrations can effectively control the electrical transport and electromagnetic properties of the composites, while also providing a method to investigate the distribution of MWCNT within the material.

Article Abstract

The dielectric properties of epoxy/MWCNT (multi-walled carbon nanotubes)/MgO hybrid composites with a fixed MWCNT amount of 0.12 vol.% (0.2 wt.%) and varying MgO concentrations up to 3 vol.% were investigated in broad frequency (20-40 GHz) and temperature (20-500 K) ranges. The composites with up to 2 vol.% MgO nanoparticles concentration showed a significant increase of DC conductivity in relation to their non MgO-containing counterparts. The optimal content of MgO was found, i.e., 0.46 vol.%, which gave up to 2.5 orders of magnitude larger DC conductivity than those of the samples prepared without MgO additives. Using various amounts of MgO, it is possible to predictably vary the broadband electromagnetic properties of the composites, even entirely eliminating the electrical percolation. Electrical transport at different temperatures can be substantially controlled by the addition of given amounts of MgO. The broadband properties are discussed in terms of the distribution of relaxation times, which are proven to be an effective, noninvasive, and simple tool for checking composite fabrication issues, such as the distribution of MWCNT aggregates within the epoxy matrix.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6960863PMC
http://dx.doi.org/10.3390/polym11122044DOI Listing

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