Stretchable superhydrophobic elastomers with on-demand tunable wettability for droplet manipulation and multi-stage reaction

Superhydrophobic surfaces with tunable wettability are critical for miniaturized reaction systems with promising applications in point-of-care diagnostics, liquid droplet micro-reactors, non-loss manipulation, and surface-enhanced Raman scattering sensing. However, the design and demonstration of stretchable superhydrophobic surfaces with on-demand transitions in wettability remain challenging. In this study, we report a facile approach to fabricating stretchable superhydrophobic surfaces with different microstructures (arc-shaped or V-shaped air pockets) for multi-stage liquid droplet micro-reactors. The surfaces with arc-shaped air pockets are kept in the stable Cassie-Baxter state enabling droplet micro-reactions, whereas the surfaces with V-shaped air pockets that go through pressure-induced Cassie-Baxter to Wenzel transitions facilitate the transport of droplets in between reactions. The low-cost and scalable fabrication method with the effective design strategy provided by this work also paves the way for broad applications that range from liquid droplet micro-reactors and manipulations to chemical detection and analysis in stretchable microfluidic devices.

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Work Title Stretchable superhydrophobic elastomers with on-demand tunable wettability for droplet manipulation and multi-stage reaction
Access
Open Access
Creators
  1. Xiaohong Ding
  2. Yunchi Cai
  3. Guofei Lu
  4. Jiapeng Hu
  5. Jinyun Zhao
  6. Longhui Zheng
  7. Zixiang Weng
  8. Huanyu Cheng
  9. Jing Lin
  10. Lixin Wu
Keyword
  1. Stretchable superhydrophobic surfaces
  2. Tunable wettability
  3. Droplet micro-reactor
  4. Droplet transport and manipulation
License In Copyright (Rights Reserved)
Work Type Article
Publisher
  1. Journal of Materials Chemistry C
Publication Date June 26, 2023
Publisher Identifier (DOI)
  1. https://doi.org/10.1039/d3tc01666h
Deposited January 29, 2024

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Version 1
published

  • Created
  • Added Manuscript-DXH-revised.docx
  • Added Creator Xiaohong Ding
  • Added Creator Yunchi Cai
  • Added Creator Guofei Lu
  • Added Creator Jiapeng Hu
  • Added Creator Jinyun Zhao
  • Added Creator Longhui Zheng
  • Added Creator Zixiang Weng
  • Added Creator Huanyu Cheng
  • Added Creator Jing Lin
  • Added Creator Lixin Wu
  • Published
  • Updated Keyword Show Changes
    Keyword
    • Stretchable superhydrophobic surfaces, Tunable wettability, Droplet micro-reactor, Droplet transport and manipulation
  • Updated

Version 2
published

  • Created
  • Deleted Manuscript-DXH-revised.docx
  • Added TC-ART-05-2023-001666.R1_Proof_hi.pdf
  • Published
  • Updated