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Solution of the tunneling-percolation problem in the nanocomposite regime
G. Ambrosetti
*
, C. Grimaldi
,
I. Balberg
, T. Maeder
, A. Danani
, P. Ryser
*
Corresponding author for this work
Racah Institute of Physics
Research output
:
Contribution to journal
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Article
›
peer-review
239
Scopus citations
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Keyphrases
Tunneling
100%
Electrical Properties
100%
Inter-particle
100%
Intermediate Regime
100%
Percolation Problems
100%
Particle Filler
100%
Nanocomposite Properties
100%
Conductance
50%
Nanotubes
50%
Numerical Results
50%
Decay Length
50%
Nanospheres
50%
Electron Tunneling
50%
Analytical Formula
50%
Tunneling Effect
50%
Expected Range
50%
Nanosheets
50%
Particle Shape
50%
Particle Dispersion
50%
Filler Particles
50%
Tunneling Decay
50%
Filler Morphology
50%
Critical Path Method
50%
Physics
Percolation
100%
Nanocomposite
100%
Conductance
100%
Electrical Property
50%
Electron Tunneling
25%
Nanosheet
25%
Nanotube
25%
Nanosphere
25%
Nanofiber
25%
Material Science
Percolation
100%
Nanocomposite
100%
Electrical Property
50%
Nanosheet
25%
Nanofiber
25%
Nanosphere
25%
Particle Shape
25%
Nanotube
25%