Portable general microfluidic device with complex electric field regulation functions for electrokinetic experiments

Electrokinetic sample manipulation is a key step for many kinds of microfluidic chips to achieve various functions, such as particle focusing and separation, fluid pumping and material synthesis. But these microfluidic experiments usually rely on large-scale signal generators for power supply, micro...

Full description

Saved in:
Bibliographic Details
Published inLab on a chip Vol. 23; no. 1; pp. 157 - 167
Main Authors Guo, Wenshang, Tao, Ye, Mao, Kaihao, Liu, Weiyu, Xue, Rui, Ge, Zhenyou, Ren, Yukun
Format Journal Article
LanguageEnglish
Published England Royal Society of Chemistry 20.12.2022
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:Electrokinetic sample manipulation is a key step for many kinds of microfluidic chips to achieve various functions, such as particle focusing and separation, fluid pumping and material synthesis. But these microfluidic experiments usually rely on large-scale signal generators for power supply, microscopes for imaging and other instruments for analysis, which hampers the portable process of microfluidic technology. Inspired by this situation, we herein designed a portable general microfluidic device (PGMD) with complex electric field regulation functions, which can accurately regulate static or continuous fluid samples. Through the graphical user interface (GUI) and modular design, the PGMD can generate multiple different electrical signals, and the micro-flow of fluid can be pumped through the built-in micropump, which can meet the requirements of most microfluidic experiments. Photos or videos of the microfluidic chip captured by the built-in microscope are received and displayed by a smartphone. We carried out a variety of microfluidic experiments such as induced-charge electroosmosis (ICEO), particle beam exit switching, thermal buoyancy flow and dielectrophoresis (DEP) on the PGMD. In addition, the PGMD can perform rapid microalgae concentration estimation in an outdoor environment, which can be used to guide microalgae cultivation, further demonstrating the development potential of this device in the field of microbial applications. Numerous results show that the PGMD has a high degree of integration and strong reliability, which expands the application of microfluidic electrokinetic experiments and provides technical support for the integration and portability of microfluidic experimental devices. A portable general microfluidic device (PGMD) with complex electric field regulation functions is designed to realize the portability of microfluidic system, and it is successfully applied in the estimation of microalgae concentration.
Bibliography:https://doi.org/10.1039/d2lc01053d
Electronic supplementary information (ESI) available. See DOI
ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
ISSN:1473-0197
1473-0189
DOI:10.1039/d2lc01053d