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January 18, 2026Nanotechnology1 citations

Electrical conductivity of randomly placed linear wires: a mean field approach

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YTYuri Yu. TarasevichAEAndrei V. EserkepovIVIrina V. Vodolazskaya

Key Points

  • The aim is to derive a formula for the electrical conductivity of a two-dimensional arrangement of conducting sticks using a mean-field approach.
  • Applied mean-field approximation to derive conductivity formula.
  • Considered both wire resistance and inter-wire contact resistance.
  • Compared theoretical findings with direct conductivity calculations for various stick orientations.
  • Demonstrated good alignment between theoretical predictions and direct calculations.
  • Found that cross-aligned nanowires exhibit lower conductivity than isotropic arrangements.
  • Showed that the zero-width stick model is suitable for cross-aligned nanowires but not for isotropic ones.

Abstract

Abstract Using the mean-field approximation, a formula for the effective electrical conductivity of a two-dimensional system of randomly arranged conducting sticks with a given orientation distribution was obtained. Both the resistance of the sticks themselves and the resistance of the contacts between them were taken into account. The accuracy in the resulting formula was analyzed. A comparison of the theoretical predictions of mean-field approach with the results of direct electrical conductivity calculations for several model orientation distributions describing systems with crossed sticks demonstrated good agreement. Our study showed that cross-alignment of nanowires should lead to a decrease in the electrical conductivity compared to electrodes with isotropically arranged nanowires. We suppose that the widely used model with zero-width sticks is quite acceptable for systems of cross-aligned nanowires, but overestimates their connectivity in isotropic systems. Thus, the enhancement of the electrical conductivity of conducting films with cross-aligned nanowires may be due to a significant difference in the network topology.

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Cite This Study

Tarasevich et al. (2026) studied this question.

synapsesocial.com/papers/696c77afeb60fb80d1395f13https://doi.org/10.1088/1361-6528/ae38e8
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