Monodisperse droplets by impinging flow-focusing

被引:0
作者
Tao Wu
Zhaofeng Luo
Weiping Ding
Zhengdong Cheng
Liqun He
机构
[1] University of Science and Technology of China,Department of Thermal Science and Energy Engineering
[2] University of Science and Technology of China,Biological and Life Sciences Division, Hefei National Laboratory of Physics Sciences at the Microscale
[3] University of Science and Technology of China,Center for Biomedical Engineering
[4] Texas A&M University,Artie McFerrin Department of Chemical Engineering
来源
Microfluidics and Nanofluidics | 2017年 / 21卷
关键词
Funnel-shaped interface; Dripping regime; Flow-focusing; Microdroplets;
D O I
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中图分类号
学科分类号
摘要
We proposed a new flow-focusing technique for generation of monodisperse femtoliter droplets, based on the capillary micro-cross. A funnel-shaped interface of two phase system is observed in a capillary cross for mass production of uniform drops, where a tapered exit orifice is extruded into the dispersed feeding capillary. The droplets, down to 2 μm in size at frequency of 20 kHz, are controllable in size when choosing orifice and capillary sizes, as well as flow rates of inner and outer fluids. For a specific diameter of exit orifice, there is a maximal flow rate of outer fluid, beyond which the interface will be penetrated. Until then, the interface is in steady state and all droplets are highly uniform (<3%), implicating an absolute instability in the whole process.
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[1]  
Acero A(2013)A new flow focusing technique to produce very thin jets J Micromech Microeng 23 065009-1962
[2]  
Rebollo-Muñoz N(2006)Microscale tipstreaming in a microfluidic flow focusing device Phys Fluids 18 121512-1848
[3]  
Montanero J(2013)Single-enzyme analysis in a droplet-based micro-and nanofluidic system Lab Chip 13 1955-38
[4]  
Gañán-Calvo A(2002)Small-scale free surface flows with breakup: drop formation and emerging applications AIChE J 48 1842-4511
[5]  
Vega E(2015)Droplet microfluidics in (bio)chemical analysis Analyst 140 22-48
[6]  
Anna SL(2013)An “off-the-shelf” capillary microfluidic device that enables tuning of the droplet breakup regime at constant flow rates Lab Chip 13 4507-4086
[7]  
Mayer HC(1962)Effect of finite boundaries on the Stokes resistance of an arbitrary particle J Fluid Mech 12 35-218
[8]  
Arayanarakool R(2009)Production of monodispersed micron-sized bubbles at high rates in a microfluidic device Appl Phys Lett 95 144101-84
[9]  
Shui L(2009)The synthesis and assembly of polymeric microparticles using microfluidics Adv Mater 21 4071-1469
[10]  
Kengen SW(2006)Lab-on-a-chip: microfluidics in drug discovery Nat Rev Drug Discov 5 210-742