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 Creators - Xiaohong Ding
- Yunchi Cai
- Guofei Lu
- Jiapeng Hu
- Jinyun Zhao
- Longhui Zheng
- Zixiang Weng
- Huanyu Cheng
- Jing Lin
- Lixin Wu
Keyword - Stretchable superhydrophobic surfaces
- Tunable wettability
- Droplet micro-reactor
- Droplet transport and manipulation
License In Copyright (Rights Reserved) Work Type Article Publisher - Journal of Materials Chemistry C
Publication Date June 26, 2023 Publisher Identifier (DOI) - https://doi.org/10.1039/d3tc01666h
Deposited January 29, 2024 Versions
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Version 1
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Manuscript-DXH-revised.docx -
Added Creator Xiaohong Ding
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Added Creator Yunchi Cai
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Added Creator Guofei Lu
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Added Creator Jiapeng Hu
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Added Creator Jinyun Zhao
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Added Creator Longhui Zheng
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Added Creator Zixiang Weng
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Added Creator Huanyu Cheng
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Added Creator Jing Lin
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Added Creator Lixin Wu
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Updated Keyword Show ChangesKeyword
- Stretchable superhydrophobic surfaces, Tunable wettability, Droplet micro-reactor, Droplet transport and manipulation
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TC-ART-05-2023-001666.R1_Proof_hi.pdf -
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