2019
DOI: 10.1063/1.5092351
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Electrical conductance of two-dimensional composites with embedded rodlike fillers: An analytical consideration and comparison of two computational approaches

Abstract: Using Monte Carlo simulation, we studied the electrical conductance of two-dimensional films. The films consisted of a poorly conductive host matrix and highly conductive rodlike fillers (rods). The rods were of various lengths, obeying a log-normal distribution. They were allowed to be aligned along a given direction. The impacts of the length dispersity and the extent of the rod alignment on the insulator-to-conductor phase transition were studied. Two alternative computational approaches were compared. With… Show more

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Cited by 19 publications
(20 citation statements)
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“…Figure 7 other ratios between the wire resistance and junction resistance and for other filler concentrations) are presented in the Supplemental Material. Similar results has also been published elsewhere [26,46,52]. The fact that the values of the potentials of the junctions are located not exactly on a straight line, but within a certain band, causes significant distortion of the current distribution in comparison with the predictions from the MFA.…”
Section: Discussionsupporting
confidence: 87%
“…Figure 7 other ratios between the wire resistance and junction resistance and for other filler concentrations) are presented in the Supplemental Material. Similar results has also been published elsewhere [26,46,52]. The fact that the values of the potentials of the junctions are located not exactly on a straight line, but within a certain band, causes significant distortion of the current distribution in comparison with the predictions from the MFA.…”
Section: Discussionsupporting
confidence: 87%
“…1b). The definition of percolation network adopted in this contribution is equivalent to the definition of ‘geometrical backbone’ used by Tarasevich et al 16…”
Section: Resultsmentioning
confidence: 99%
“…Additional technical details can be found elsewhere. 32,47 The computer experiments were repeated 100 times for each value of the number density. The error bars in the figures correspond to the standard deviation of the mean.…”
Section: Simulationmentioning
confidence: 99%