Literature DB >> 32254141

Percolation in networks of 1-dimensional objects: comparison between Monte Carlo simulations and experimental observations.

Daniel P Langley1, Mélanie Lagrange, Ngoc Duy Nguyen, Daniel Bellet.   

Abstract

Planar networks composed of 1-dimensional nanometer scale objects such as nanotubes or nanowires have been attracting growing interest in recent years. In this work we directly compare the percolation threshold of silver nanowire networks to predictions from Monte Carlo simulations, focusing particularly on understanding the impact of real world imperfections on the percolation onset in these systems. This work initially determines the percolation threshold as calculated from an ideal system using Monte Carlo methods. On this foundation we address the effects of perturbations in length, angular anisotropy and radius of curvature of the 1-dimensional objects, in line with those observed experimentally in purposely fabricated samples. This work explores why two-dimensional stick models in the literature currently underestimate the percolation onset in real systems and identifies which of the network's features play the most significant role in that deviation.

Entities:  

Year:  2018        PMID: 32254141     DOI: 10.1039/c8nh00066b

Source DB:  PubMed          Journal:  Nanoscale Horiz        ISSN: 2055-6756            Impact factor:   10.989


  2 in total

1.  Dynamic degradation of metallic nanowire networks under electrical stress: a comparison between experiments and simulations.

Authors:  Nicolas Charvin; Joao Resende; Dorina T Papanastasiou; David Muñoz-Rojas; Carmen Jiménez; Ali Nourdine; Daniel Bellet; Lionel Flandin
Journal:  Nanoscale Adv       Date:  2020-12-08

2.  Rapid synthesis of ultra-long silver nanowires for high performance transparent electrodes.

Authors:  Alexandra Madeira; Dorina T Papanastasiou; Thierry Toupance; Laurent Servant; Mona Tréguer-Delapierre; Daniel Bellet; I A Goldthorpe
Journal:  Nanoscale Adv       Date:  2020-07-13
  2 in total

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