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Micro-Acoustic Holograms for Detachable Microfluidic Devices.

Mingxin XuCallum VidlerJizhen WangXi ChenZijian PanWilliam S HarleyPeter Vee Sin LeeDavid John Collins
Published in: Small (Weinheim an der Bergstrasse, Germany) (2024)
Acoustic microfluidic devices have advantages for diagnostic applications, therapeutic solutions, and fundamental research due to their contactless operation, simple design, and biocompatibility. However, most acoustofluidic approaches are limited to forming simple and fixed acoustic patterns, or have limited resolution. In this study,a detachable microfluidic device is demonstrated employing miniature acoustic holograms to create reconfigurable, flexible, and high-resolution acoustic fields in microfluidic channels, where the introduction of a solid coupling layer makes these holograms easy to fabricate and integrate. The application of this method to generate flexible acoustic fields, including shapes, characters, and arbitrarily rotated patterns, within microfluidic channels, is demonstrated.
Keyphrases
  • circulating tumor cells
  • high throughput
  • single cell
  • high resolution
  • label free
  • mass spectrometry
  • room temperature
  • ionic liquid
  • tandem mass spectrometry