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  4. Synchronized reinjection and coalescence of droplets in microfluidics
 
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2014
Journal Article
Title

Synchronized reinjection and coalescence of droplets in microfluidics

Abstract
Coalescence of two kinds of pre-processed droplets is necessary to perform chemical and biological assays in droplet-based microfluidics. However, a robust technique to accomplish this does not exist. Here we present a microfluidic device to synchronize the reinjection of two different kinds of droplets and coalesce them, using hydrostatic pressure in conjunction with a conventional syringe pump. We use a device consisting of two opposing T-junctions for reinjecting two kinds of droplets and control the flows of the droplets by applying gravity-driven hydrostatic pressure. The hydrostatic-pressure operation facilitates balancing the droplet reinjection rates and allows us to synchronize the reinjection. Furthermore, we present a simple but robust module to coalesce two droplets that sequentially come into the module, regardless of their arrival times. These re-injection and coalescence techniques might be used in lab-on-chip applications requiring droplets with controlled numbers of solid materials, which can be made by coalescing two pre-processed droplets that are formed and sorted in devices.
Author(s)
Lee, Manhee
Collins, Jesse W.
Aubrecht, Donald M.
Sperling, Ralph  
Solomon, Laura
Ha, Jong-Wook
Yi, Gi-Ra
Weitz, David A.
Journal
LAB on a chip  
Open Access
DOI
10.1039/C3LC51214B
Language
English
ICT-IMM  
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