Bridge percolation: electrical connectivity of discontinued conducting slabs by metallic nanowires

The properties of nanostructured networks of conductive materials have been extensively studied under the lens of percolation theory. In this work, we introduce a novel type of local percolation phenomenon used to investigate the conduction properties of a new hybrid material that combines sparse me...

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Veröffentlicht in:Nanoscale 2024-05, Vol.16 (17), p.8361-8368
Hauptverfasser: Baret, A, Bardet, L, Oser, D, Langley, D. P, Balty, F, Bellet, D, Nguyen, N. D
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Sprache:eng
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Zusammenfassung:The properties of nanostructured networks of conductive materials have been extensively studied under the lens of percolation theory. In this work, we introduce a novel type of local percolation phenomenon used to investigate the conduction properties of a new hybrid material that combines sparse metallic nanowire networks and fractured conducting thin films on flexible substrates. This original concept could potentially lead to the design of a novel composite transparent conducting material. Using a complementary approach including formal analytical derivations, Monte Carlo simulations and electrical circuit representation for the modelling of bridged-percolating nanowire networks, we unveil the key relations between linear crack density, nanowire length and network areal mass density that ensure electrical percolation through the hybrid. The proposed theoretical model provides key insights into the conduction mechanism associated with the original concept of bridge percolation in random nanowire networks. A novel composite material is introduced and its unique electrical conduction properties are investigated using the original concept of bridge percolation. The study provides key insights into its percolation and resistive scaling behaviors.
ISSN:2040-3364
2040-3372
2040-3372
DOI:10.1039/d3nr05850f