Sorting and separation of microparticles by surface properties using liquid crystal-enabled electro-osmosis
Chenhui Peng, Taras Turiv, Yubing Guo, Qi-Huo Wei, Oleg D., Lavrentovich

TL;DR
This paper introduces a novel liquid crystal-enabled electro-osmosis technique for sorting and separating microparticles based on subtle surface properties, surpassing traditional bulk property-based methods.
Contribution
The work presents a new method using nematic liquid crystals and electric fields to differentiate particles with identical bulk properties but different surface features.
Findings
Successfully separated particles based on surface properties
Demonstrated sorting in a liquid crystal medium
Potential applications in bio-sensing and lab-on-a-chip
Abstract
Sorting and separation of microparticles is a challenging problem of interdisciplinary nature. Existing technologies can differentiate microparticles by their bulk properties, such as size, density, electric polarizability, etc. The next level of challenge is to separate particles that show identical bulk properties and differ only in subtle surface features, such as functionalization with ligands. In this work, we propose a technique to sort and separate particles and fluid droplets that differ in surface properties. As a dispersive medium, we use a nematic liquid crystal (LC) rather than an isotropic fluid, which allows us to amplify the difference in surface properties through distinct perturbations of LC order around the dispersed particles. The particles are placed in a LC cell with spatially distorted molecular orientation subject to an alternating current electric field. The…
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Taxonomy
TopicsMicrofluidic and Bio-sensing Technologies · Micro and Nano Robotics · Electrohydrodynamics and Fluid Dynamics
