Micromachines (May 2018)

A Handy Liquid Metal Based Non-Invasive Electrophoretic Particle Microtrap

  • Lu Tian,
  • Lunjia Zhang,
  • Meng Gao,
  • Zhongshan Deng,
  • Lin Gui

DOI
https://doi.org/10.3390/mi9050221
Journal volume & issue
Vol. 9, no. 5
p. 221

Abstract

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A handy liquid metal based non-invasive particle microtrap was proposed and demonstrated in this work. This kind of microtrap can be easily designed and fabricated at any location of a microfluidic chip to perform precise particle trapping and releasing without disturbing the microchannel itself. The microsystem demonstrated in this work utilized silicon oil as the continuous phase and fluorescent particles (PE-Cy5, SPHEROTM Fluorescent Particles, BioLegend, San Diego, CA, USA, 10.5 μm) as the target particles. To perform the particle trapping, the micro system utilized liquid-metal-filled microchannels as noncontact electrodes to generate different patterns of electric field inside the fluid channel. According to the experimental results, the target particle can be selectively trapped and released by switching the electric field patterns. For a better understanding the control mechanism, a numerical simulation of the electric field was performed to explain the trapping mechanism. In order to verify the model, additional experiments were performed and are discussed.

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