NASA NTRS · 19970000472
Cell and Particle Interactions and Aggregation During Electrophoretic Motion
Abstract
The stability and pairwise aggregation rates of small spherical particles under the collective effects of buoyancy-driven motion and electrophoretic migration are analyzed. The particles are assumed to be non-Brownian, with thin double-layers and different zeta potentials. The particle aggregation rates may be enhanced or reduced, respectively, by parallel and antiparallel alignments of the buoyancy-driven and electrophoretic velocities. For antiparallel alignments, with the buoyancy-driven relative velocity exceeding the electrophoretic relative velocity between two widely-separated particles, there is a 'collision-forbidden region' in parameter space due to hydrodynamic interactions; thus, the suspension becomes stable against aggregation.
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Wang, Hua, Zeng, Shulin, Loewenberg, Michael, Todd, Paul, Davis, Robert H.. 1996-09-01. Cell and Particle Interactions and Aggregation During Electrophoretic Motion. https://ntrs.nasa.gov/citations/19970000472
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