Isotropic-nematic interface and wetting in suspensions of colloidal platelets

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Abstract

We study interfacial phenomena in a colloidal dispersion of sterically stabilized gibbsite platelets, exhibiting coexisting isotropic and nematic phases separated by a sharp horizontal interface. The nematic phase wets a vertical glass wall and polarized light micrographs reveal homeotropic surface anchoring both at the free isotropic-nematic interface and at the wall. On the basis of complete wetting of the wall by the nematic phase, as found in our density functional calculations and computer simulations, we analyze the balance between Frank elasticity and surface anchoring near the contact line. Because of weak surface anchoring, the director field in the capillary rise region is uniform. From the measured rise (6μm) of the meniscus at the wall we determine the isotropic-nematic surface tension to be 3nN/m, in quantitative agreement with our theoretical and simulation results. © 2006 The American Physical Society.

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Van Der Beek, D., Reich, H., Van Der Schoot, P., Dijkstra, M., Schilling, T., Vink, R., … Lekkerkerker, H. (2006). Isotropic-nematic interface and wetting in suspensions of colloidal platelets. Physical Review Letters, 97(8). https://doi.org/10.1103/PhysRevLett.97.087801

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