analysis of dc electrical conductivity models of carbon nanotube-polymer composites with potential application to nanometric electronic devices

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ID: 231052
2013
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Abstract
The design of nanometric electronic devices requires novel materials for improving their electrical performance from stages of design until their fabrication. Until now, several DC electrical conductivity models for composite materials have been proposed. However, these models must be valued to identify main design parameters that more efficiently control the electrical properties of the materials to be developed. In this paper, four different models used for modeling DC electrical conductivity of carbon nanotube-polymer composites are studied with the aim of obtaining a complete list of design parameters that allow guarantying to the designer an increase in electrical properties of the composite by means of carbon nanotubes.
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vargas-bernal2013journalanalysis Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Rafael Vargas-Bernal;Gabriel Herrera-Pérez;Ma. Elena Calixto-Olalde;Margarita Tecpoyotl-Torres
Journal Molecular diversity
Year 2013
DOI
10.1155/2013/179538
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