In situ seriate droplet coalescence under an optical force

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We demonstrated the induced coalescence of droplets under a highly accurate optical force control. Optical scattering and gradient forces were used to push and trap the droplets prior to coalescence within a microfluidic channel. The behavior of the droplets under the influence of an optical force was predicted using an analytical model that agreed well with the experimental data. The optical gradient force accelerated and decelerated the droplet within the laser beam region, and the drag force acting on the droplet was thoroughly characterized. A description of the optical trap was presented in terms of the momentum transfer from the photons to the droplet, effectively restricting droplet motion inside the microfluidic channel prior to coalescence. A phase diagram was plotted to distinguish between the three regimes of droplet coalescence, including the absence of coalescence, coalescence, and multiple coalescence events. The phase diagram permitted the laser power input and the net flow rate in the microfluidic channel to be estimated. This technique was applied to the synthesis of biodegradable gel microparticles.
Publisher
SPRINGER HEIDELBERG
Issue Date
2015-05
Language
English
Article Type
Article
Keywords

MICROFLUIDIC PLATFORM; CHANNELS; SYSTEM; MANIPULATION; SEPARATION; FUSION; FUTURE; ARRAY; FLOW

Citation

MICROFLUIDICS AND NANOFLUIDICS, v.18, no.5-6, pp.1247 - 1254

ISSN
1613-4982
DOI
10.1007/s10404-014-1522-8
URI
http://hdl.handle.net/10203/198718
Appears in Collection
ME-Journal Papers(저널논문)
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