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Connectivity, Not Density, Dictates Percolation in Nematic Liquid Crystals of Slender Nanoparticles

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arxiv 1903.02437 v1 pith:2EABZKZN submitted 2019-03-06 cond-mat.soft

classification cond-mat.soft
keywords densitynematicpercolationconnectivitynematicsslenderanisotropicclusters
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We show by means of continuum theory and simulations that geometric percolation in uniaxial nematics of hard slender particles is fundamentally different from that in isotropic dispersions. In the nematic, percolation depends only very weakly on the density and is, in essence, determined by a distance criterion that defines connectivity. This unexpected finding has its roots in the non-trivial coupling between the density and the degree of orientational order that dictate the mean number of particle contacts. Clusters in the nematic are much longer than wide, suggesting the use of nematics for nanocomposites with strongly anisotropic transport properties.

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