Verification of Perrin's theory of the motion of dilute spheroidal colloids
John David Geiger, Mohammed Alhissi, Markus Voggenreiter, Matthias, Fuchs, Andreas Zumbusch

TL;DR
This study systematically verifies Perrin's theory of spheroidal colloid motion by synthesizing and tracking their diffusion, confirming theoretical predictions for various aspect ratios and the transition from anisotropic to isotropic diffusion.
Contribution
The paper provides the first comprehensive experimental validation of Perrin's spheroid diffusion theory using synthesized particles and advanced microscopy.
Findings
Excellent agreement between experimental data and theoretical predictions.
Confirmation of the crossover from anisotropic to isotropic diffusion.
Validation of translation-rotation coupling dynamics.
Abstract
Brownian motion is of central importance for understanding diffusive transport in biology, chemistry, and physics. For spherical particles, the theory was developed by Einstein, whereas a theoretical description of the motion of spheroids was given by F. Perrin. Here, we report the systematic verification of Perrin's theory 90 years after its publication. To this end, we synthesized oblate and prolate core-shell spheroids with different aspect ratios and tracked their three-dimensional diffusive motion in high dilution using confocal fluorescence microscopy. The experimental data for the dependence of translational and rotational diffusion on aspect ratio are in excellent agreement with the theoretical predictions. The crossover dynamics from anisotropic to isotropic diffusion as a hallmark for translation rotation coupling are also found as predicted. This verifies Perrin's theory as a…
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Taxonomy
TopicsMicro and Nano Robotics
