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An electrothermal platform for active droplet manipulation

The smart control of droplet transport through surface structures and external fields provides exciting opportunities in engineering fields of phase change heat transfer, biomedical chips, and energy harvesting. Here we report the wedge-shaped slippery lubricant-infused porous surface (WS-SLIPS) as...

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Autores principales: Liu, Yahua, Xia, Yuhang, Zhan, Haiyang, Lu, Chenguang, Yuan, Zichao, Zhao, Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10167797/
https://www.ncbi.nlm.nih.gov/pubmed/37181519
http://dx.doi.org/10.1039/d3ra01108a
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author Liu, Yahua
Xia, Yuhang
Zhan, Haiyang
Lu, Chenguang
Yuan, Zichao
Zhao, Lei
author_facet Liu, Yahua
Xia, Yuhang
Zhan, Haiyang
Lu, Chenguang
Yuan, Zichao
Zhao, Lei
author_sort Liu, Yahua
collection PubMed
description The smart control of droplet transport through surface structures and external fields provides exciting opportunities in engineering fields of phase change heat transfer, biomedical chips, and energy harvesting. Here we report the wedge-shaped slippery lubricant-infused porous surface (WS-SLIPS) as an electrothermal platform for active droplet manipulation. WS-SLIPS is fabricated by infusing a wedge-shaped superhydrophobic aluminum plate with phase-changeable paraffin. While the surface wettability of WS-SLIPS can be readily and reversibly switched by the freezing–melting cycle of paraffin, the curvature gradient of the wedge-shaped substrate automatically induces an uneven Laplace pressure inside the droplet, endowing WS-SLIPS the ability to directionally transport droplets without any extra energy input. We demonstrate that WS-SLIPS features spontaneous and controllable droplet transport capability to initiate, brake, lock, and resume the directional motion of various liquid droplets including water, saturated NaCl solution, ethanol solution, and glycerol, under the control of preset DC voltage (∼12 V). In addition, the WS-SLIPS can automatically repair surface scratches or indents when heated and retain the full liquid-manipulating capability afterward. The versatile and robust droplet manipulation platform of WS-SLIPS can be further used in practical scenarios such as laboratory-on-a-chip settings, chemical analysis and microfluidic reactors, paving a new path to develop advanced interface for multifunctional droplet transport.
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spelling pubmed-101677972023-05-10 An electrothermal platform for active droplet manipulation Liu, Yahua Xia, Yuhang Zhan, Haiyang Lu, Chenguang Yuan, Zichao Zhao, Lei RSC Adv Chemistry The smart control of droplet transport through surface structures and external fields provides exciting opportunities in engineering fields of phase change heat transfer, biomedical chips, and energy harvesting. Here we report the wedge-shaped slippery lubricant-infused porous surface (WS-SLIPS) as an electrothermal platform for active droplet manipulation. WS-SLIPS is fabricated by infusing a wedge-shaped superhydrophobic aluminum plate with phase-changeable paraffin. While the surface wettability of WS-SLIPS can be readily and reversibly switched by the freezing–melting cycle of paraffin, the curvature gradient of the wedge-shaped substrate automatically induces an uneven Laplace pressure inside the droplet, endowing WS-SLIPS the ability to directionally transport droplets without any extra energy input. We demonstrate that WS-SLIPS features spontaneous and controllable droplet transport capability to initiate, brake, lock, and resume the directional motion of various liquid droplets including water, saturated NaCl solution, ethanol solution, and glycerol, under the control of preset DC voltage (∼12 V). In addition, the WS-SLIPS can automatically repair surface scratches or indents when heated and retain the full liquid-manipulating capability afterward. The versatile and robust droplet manipulation platform of WS-SLIPS can be further used in practical scenarios such as laboratory-on-a-chip settings, chemical analysis and microfluidic reactors, paving a new path to develop advanced interface for multifunctional droplet transport. The Royal Society of Chemistry 2023-05-09 /pmc/articles/PMC10167797/ /pubmed/37181519 http://dx.doi.org/10.1039/d3ra01108a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liu, Yahua
Xia, Yuhang
Zhan, Haiyang
Lu, Chenguang
Yuan, Zichao
Zhao, Lei
An electrothermal platform for active droplet manipulation
title An electrothermal platform for active droplet manipulation
title_full An electrothermal platform for active droplet manipulation
title_fullStr An electrothermal platform for active droplet manipulation
title_full_unstemmed An electrothermal platform for active droplet manipulation
title_short An electrothermal platform for active droplet manipulation
title_sort electrothermal platform for active droplet manipulation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10167797/
https://www.ncbi.nlm.nih.gov/pubmed/37181519
http://dx.doi.org/10.1039/d3ra01108a
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