Long-time translational self-diffusion in isotropic and nematic dispersions of colloidal rods
Publication date
1998
Authors
Bruggen, M.P.B. van
Lekkerkerker, H.N.W.
Maret, G.
Dhont, J.K.G.
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Document Type
Article
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Abstract
Long-time self-diffusion in dispersions of rigid colloidal rods with an aspect ratio of 19 is studied with
fluorescence recovery after photobleaching (FRAP)in isotropic and nematic phases. The long-time selfdiffusion
coefficient DLs is found to decrease linearly with concentration up to (L/D)φ= 0.12 (with L the
length and D the diameter of the rods, and φ the volume fraction). In the isotropic phase in coexistence with
the nematic phase, DLs remains virtually constant at about 1% of its value at infinite dilution. In the nematic
phase long-time self-diffusion is found to be ten times slower than in the coexisting isotropic phase. In
addition, by modifying the FRAP geometry we were able to distinguish between sidewise and lengthwise
diffusion in aligned nematic phases.