Scinovex
reviewTop 1% cited

Passive and active droplet generation with microfluidics: a review

Lab on a Chip · 2016 · Vol. 17(1) · pp. 34–75
Pingan ZhuLiqiu Wang

Abstract

Precise and effective control of droplet generation is critical for applications of droplet microfluidics ranging from materials synthesis to lab-on-a-chip systems. Methods for droplet generation can be either passive or active, where the former generates droplets without external actuation, and the latter makes use of additional energy input in promoting interfacial instabilities for droplet generation. A unified physical understanding of both passive and active droplet generation is beneficial for effectively developing new techniques meeting various demands arising from applications. Our review of passive approaches focuses on the characteristics and mechanisms of breakup modes of droplet generation occurring in microfluidic cross-flow, co-flow, flow-focusing, and step emulsification configurations. The review of active approaches covers the state-of-the-art techniques employing either external forces from electrical, magnetic and centrifugal fields or methods of modifying intrinsic properties of flows or fluids such as velocity, viscosity, interfacial tension, channel wettability, and fluid density, with a focus on their implementations and actuation mechanisms. Also included in this review is the contrast among different approaches of either passive or active nature.

Citations
1,168
FWCI
37.26
field-weighted impact
References
328
Percentile
100%
vs. same field & year
Citations per year
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
Microfluidic methods for generating continuous droplet streams
Journal of Physics D Applied Physics · 2007 · 827 citations
Microfluidics: Fluid physics at the nanoliter scale
Reviews of Modern Physics · 2005 · 4,225 citations
Drop formation in a co-flowing ambient fluid
Chemical Engineering Science · 2004 · 517 citations
Microscale tipstreaming in a microfluidic flow focusing device
Physics of Fluids · 2006 · 389 citations
Related articles
Microfluidic platforms for lab-on-a-chip applications
Lab on a Chip · 2007 · 1,095 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.