Logo image
Self-Aligned Acoustofluidic Particle Focusing and Patterning in Microfluidic Channels from Channel-Based Acoustic Waveguides
Journal article   Peer reviewed

Self-Aligned Acoustofluidic Particle Focusing and Patterning in Microfluidic Channels from Channel-Based Acoustic Waveguides

David J. Collins, Richard O'Rorke, Citsabehsan Devendran, Zhichao Ma, Jongyoon Han, Adrian Neild and Ye Ai
Physical review letters, Vol.120(7), p.074502
16/02/2018
PMID: 29542954

Abstract

Physical Sciences Physics Physics, Multidisciplinary Science & Technology
Acoustic fields have been widely used for manipulation of particles and cells within microfluidic systems. In this Letter, we explore a novel acoustofluidic phenomenon for particle patterning and focusing, where a periodic acoustic pressure field is produced parallel to internal channel boundaries with the imposition of either a traveling or standing surface acoustic wave (SAW). This effect results from the propagation and intersection of edge waves from the channel walls according to the Huygens-Fresnel principle and classical wave fronts from the substrate-fluid interface. We demonstrate versatile control over this effect to produce both one-and two-dimensional acoustic patterning from one-dimensional SAW fields and its utility for continuous particle focusing. Uniquely, this channel-guided acoustic focusing permits the generation of robust acoustic fields without channel resonance conditions and particle focusing positions that are difficult or impossible to produce otherwise.
url
https://doi.org/10.1103/PhysRevLett.120.074502View
Published (Version of record) Open

Metrics

1 Record Views

Details

Logo image