2020
DOI: 10.1002/app.50313
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Electrical conductivity of interphase zone in polymer nanocomposites by carbon nanotubes properties and interphase depth

Abstract: In this work, carbon nanotubes (CNT) properties and interphase depth define the interphase conductivity in polymer CNT nanocomposites (PCNT). In addition, the operative CNT length and volume portion are linked to the conductivity transportation between CNT and insulated polymer medium to propose a simple model for conductivity. The significances of various terms on the interphase conductivity and conductivity of PCNT are justified and the model's predictions are examined using the experimental outputs of certa… Show more

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Cited by 7 publications
(4 citation statements)
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References 52 publications
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“…The total volume share of interphase zone in a sample with a tube‐shaped filler such as HNT is defined 36 as: ϕigoodbreak=ϕf[]1+tR2goodbreak−1, where “ t ” is interphase depth.…”
Section: Theoretical Viewsmentioning
confidence: 99%
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“…The total volume share of interphase zone in a sample with a tube‐shaped filler such as HNT is defined 36 as: ϕigoodbreak=ϕf[]1+tR2goodbreak−1, where “ t ” is interphase depth.…”
Section: Theoretical Viewsmentioning
confidence: 99%
“…Both HNT and interphase have the strengthening roles in the nanocomposites. Thus, the operative filler concentration is given by the amounts of HNT and nearby interphase zone as: ϕeffgoodbreak=ϕfgoodbreak+ϕigoodbreak=ϕf1+tR2. Besides, the percolation start in a nanocomposite containing a tube‐shaped nanoparticle such as HNT is given by the similar equation for CNT 36 as: ϕpgoodbreak=πR2l323πR+t3[]1goodbreak+34()lR+tgoodbreak+332lR+t2 which links the percolation start to the dimensions of HNT and interphase.…”
Section: Theoretical Viewsmentioning
confidence: 99%
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