2014•Bulletin of the American Physical SocietyRequires access

Electrohydrodynamic manipulation of particles on drop surfaces

Edison C. Amah, Kinnari Shah, Ian S. Fischer, Pushpendra Singh

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Abstract

eld, and that this method can be used to separate on the surface of a drop those particles experiencing positive dielectrophoresis from those experiencing negative dielectrophoresis. In this talk we show that the frequency of the electric eld is an important parameter which can be used to modify the intensities of the dielectrophoretic and the hydrodynamic-ow induced forces, and thus control the distribution of self-assembled monolayers.

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What this paper is about

eld, and that this method can be used to separate on the surface of a drop those particles experiencing positive dielectrophoresis from those experiencing negative dielectrophoresis. In this talk we show that the frequency of the electric eld is an important parameter which can be used to modify the intensities of the dielectrophoretic and the hydrodynamic-ow induced forces, and thus control the distribution of self-assembled monolayers.

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Available abstract

eld, and that this method can be used to separate on the surface of a drop those particles experiencing positive dielectrophoresis from those experiencing negative dielectrophoresis. In this talk we show that the frequency of the electric eld is an important parameter which can be used to modify the intensities of the dielectrophoretic and the hydrodynamic-ow induced forces, and thus control the distribution of self-assembled monolayers.

Key concepts: Dielectrophoresis, Electrohydrodynamics, Drop (telecommunication), Electric field, Materials science, Monolayer, Nanotechnology, Mechanics

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