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Microscale tipstreaming in a microfluidic flow focusing device

Physics of Fluids · 2006 · Vol. 18(12)
Shelley L. AnnaHans C. Mayer

Abstract

A microfluidic flow-focusing device is used to explore the use of surfactant-mediated tipstreaming to synthesize micrometer-scale and smaller droplets. By controlling the surfactant bulk concentration of a soluble nonionic surfactant in the neighborhood of the critical micelle concentration, along with the capillary number and the ratio of the internal and external flow rates, we observe several distinct modes of droplet breakup. For the most part, droplet breakup in microfluidic devices results in highly monodisperse droplets in the range of tens of micrometers in size. However, we observe a new mode of breakup called “thread formation” that resembles tipstreaming and yields tiny droplets in the range of a few micrometers in size or smaller. In this work, we characterize the growth of the thread and its maximum length as a function of flow variables and surfactant content, and we also characterize the period of droplet breakup as a function of these variables. Our results suggest possible methods for controlling the process. Using a simple flow visualization experiment as the basis, we report on preliminary efforts to model the thread formation process.

Innovative Microfluidic and Catalytic Techniques InnovationElectrowetting and Microfluidic TechnologiesMicrofluidic and Capillary Electrophoresis ApplicationsBreakupMicroscale chemistryFlow focusingMicrofluidicsDispersityCapillary actionPulmonary surfactantThread (computing)Capillary numberNanotechnology

Funding

  • Carnegie Mellon University
  • American Chemical Society Petroleum Research Fund
Citations
389
FWCI
10.88
field-weighted impact
References
52
Percentile
99%
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Citations per year
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References
On the instability of a cylindrical thread of a viscous liquid surrounded by another viscous fluid
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1935 · 1,069 citations
Formation of dispersions using “flow focusing” in microchannels
Applied Physics Letters · 2003 · 2,229 citations
Rapid Prototyping of Microfluidic Systems in Poly(dimethylsiloxane)
Analytical Chemistry · 1998 · 5,227 citations
Viscous and resistive eddies near a sharp corner
Journal of Fluid Mechanics · 1964 · 1,517 citations
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