Oscillatory multiphase flow strategy for chemistry and biology
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Jensen_Oscillatory multiphase.pdf
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4.48 MB
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4703c54581aa2cdd465883029c57709b
Author(s) •
Abolhasani, Milad
Jensen, Klavs F
Date Issued
July 2016
Journal
Lab on a Chip
Publisher
Royal Society of Chemistry
Citation
Abolhasani, Milad, and Klavs F. Jensen. “Oscillatory Multiphase Flow Strategy for Chemistry and Biology.” Lab Chip 16.15 (2016): 2775–2784. © 2016 Royal Society of Chemistry
Version
Final published version
Abstract
Continuous multiphase flow strategies are commonly employed for high-throughput parameter screening of physical, chemical, and biological processes as well as continuous preparation of a wide range of fine chemicals and micro/nano particles with processing times up to 10 min. The inter-dependency of mixing and residence times, and their direct correlation with reactor length have limited the adaptation of multiphase flow strategies for studies of processes with relatively long processing times (0.5–24 h). In this frontier article, we describe an oscillatory multiphase flow strategy to decouple mixing and residence times and enable investigation of longer timescale experiments than typically feasible with conventional continuous multiphase flow approaches. We review current oscillatory multiphase flow technologies, provide an overview of the advancements of this relatively new strategy in chemistry and biology, and close with a perspective on future opportunities.
MIT Department
Massachusetts Institute of Technology. Department of Chemical Engineering
Terms of Use
Creative Commons Attribution 3.0 Unported license
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DOI of Published Version
https://doi.org/10.1039/c6lc00728g