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Formation of surface nanodroplets under controlled flow conditions

journal contribution
posted on 2024-11-01, 23:31 authored by Xuehua Zhang, Ziyang Lu, Huanshu Tan, Lei BaoLei Bao, Yinghe He, Chao Sun, Detlef Lohse
Nanodroplets on a solid surface (i.e., surface nanodroplets) have practical implications for high-throughput chemical and biological analysis, lubrications, laboratory-on-chip devices, and near-field imaging techniques. Oil nanodroplets can be produced on a solid. liquid interface in a simple step of solvent exchange in which a good solvent of oil is displaced by a poor solvent. In this work, we experimentally and theoretically investigate the formation of nanodroplets by the solvent exchange process under well-controlled flow conditions. We find significant effects from the flow rate and the flow geometry on the droplet size. We develop a theoretical framework to account for these effects. The main idea is that the droplet nuclei are exposed to an oil oversaturation pulse during the exchange process. The analysis shows that the volume of the nanodroplets increases with the Peclet number Pe of the flow as ∞Pe< sup>3/4< /sup>, which is in good agreement with our experimental results. In addition, at fixed flow rate and thus fixed Peclet number, larger and less homogeneously distributed droplets formed at less-narrow channels, due to convection effects originating from the density difference between the two solutions of the solvent exchange. The understanding from this work provides valuable guidelines for producing surface nanodroplets with desired sizes by controlling the flow conditions.

Funding

Acoustowetting: Microscale and Nanoscale Liquid Manipulation for Microfluidic Applications

Australian Research Council

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Engineering nanosheet-based novel structures

Australian Research Council

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History

Related Materials

  1. 1.
    DOI - Is published in 10.1073/pnas.1506071112
  2. 2.
    ISSN - Is published in 00278424

Journal

Proceedings of the National Academy of Sciences of the United States of America

Volume

112

Issue

30

Start page

9253

End page

9257

Total pages

5

Publisher

National Academy of Sciences

Place published

United States

Language

English

Copyright

Copyright © 2015 National Academy of Sciences

Former Identifier

2006056294

Esploro creation date

2020-06-22

Fedora creation date

2015-11-25

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