Projects per year
Abstract
We present a citrus-peel-like micro-cavity structure for the design of durable Slippery Liquid-Infused Porous Surfaces (SLIPSs). Owing to the re-entrant and enclosed nature of micro-cavity, lubricant oils can be stabilized by mitigating mass loss resulting from liquid displacement and shear drainage, respectively. Citrus-peel-like micro-cavity SLIPS displays two orders of magnitude enhancement in durability in the droplet-sliding test when compared with micro-pillar SLIPS and smooth lubricant surface. We demonstrated precise droplet manipulation without liquid loss and cross-contamination by harnessing the Marangoni effect with photo-thermal control. Cavity-smooth SLIPS with large adhesion contrast was patterned to initiate multiple droplet coalescences for on-demand neutralization reaction. The citrus-peel-like micro-cavity SLIPS would be beneficial to various applications, such as multi-step chemical reactions and bio-detections that require loss-free, contamination-free, and programmable droplet manipulation.
| Original language | English |
|---|---|
| Article number | 129599 |
| Journal | Chemical Engineering Journal |
| Volume | 420 |
| Issue number | Part 1 |
| Online published | 6 Apr 2021 |
| DOIs | |
| Publication status | Published - 15 Sept 2021 |
Research Keywords
- Citrus-peel-like structure
- Droplet manipulation
- Durable slippery surface
- Microfluidics
RGC Funding Information
- RGC-funded
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Dive into the research topics of 'Citrus-peel-like durable slippery surfaces'. Together they form a unique fingerprint.Projects
- 1 Finished
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CRF: Bio-inspired Surface Engineering for Phase Change Heat Transfer: From Fundamental Understanding to Practical Applications
WANG, Z. (Principal Investigator / Project Coordinator), YAO, X. (Co-Principal Investigator), Qian, T. (Co-Investigator), WANG, L. (Co-Investigator), XU, L. (Co-Investigator) & Yao, S. (Co-Investigator)
1/02/18 → 28/01/22
Project: Research
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