Issue 3, 2024

Multifunctional droplet handling on surface-charge-graphic-decorated porous papers

Abstract

Developing a fluidic platform that combines high-throughput with reconfigurability is essential for a wide range of cutting-edge applications, but achieving both capabilities simultaneously remains a significant challenge. Herein, we propose a novel and unique method for droplet manipulation via drawing surface charge graphics on electrode-free papers in a contactless way. We find that opposite charge graphics can be written and retained on the surface layer of porous insulating paper by a controlled charge depositing method. The retained charge graphics result in high-resolution patterning of electrostatic potential wells (EPWs) on the hydrophobic porous surface, allowing for digital and high-throughput droplet handling. Since the charge graphics can be written/projected dynamically and simultaneously in large areas, allowing for on-demand and real-time reconfiguration of EPWs, we are able to develop a charge-graphic fluidic platform with both high reconfigurability and high throughput. The advantages and application potential of the platform have been demonstrated in chemical detection and dynamically controllable fluidic networks.

Graphical abstract: Multifunctional droplet handling on surface-charge-graphic-decorated porous papers

Supplementary files

Article information

Article type
Paper
Submitted
23 Sep 2023
Accepted
21 Dec 2023
First published
04 Jan 2024

Lab Chip, 2024,24, 594-603

Multifunctional droplet handling on surface-charge-graphic-decorated porous papers

J. Wu, D. Fang, Y. Zhou, G. Gao, J. Zeng, Y. Zeng and H. Zheng, Lab Chip, 2024, 24, 594 DOI: 10.1039/D3LC00806A

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