Lai Xiaochen, Yang Mingpeng, Wu Hao, Li Dachao
School of Automation, Nanjing University of Information Science & Technology, Nanjing 210044, China.
State Key Laboratory of Precision Measuring Technology and Instruments, Tianjin University, Tianjin 300072, China.
Micromachines (Basel). 2022 Aug 22;13(8):1363. doi: 10.3390/mi13081363.
This review mainly studies the development status, limitations, and future directions of modular microfluidic systems. Microfluidic technology is an important tool platform for scientific research and plays an important role in various fields. With the continuous development of microfluidic applications, conventional monolithic microfluidic chips show more and more limitations. A modular microfluidic system is a system composed of interconnected, independent modular microfluidic chips, which are easy to use, highly customizable, and on-site deployable. In this paper, the current forms of modular microfluidic systems are classified and studied. The popular fabrication techniques for modular blocks, the major application scenarios of modular microfluidics, and the limitations of modular techniques are also discussed. Lastly, this review provides prospects for the future direction of modular microfluidic technologies.
本综述主要研究模块化微流控系统的发展现状、局限性及未来发展方向。微流控技术是科学研究的重要工具平台,在各个领域发挥着重要作用。随着微流控应用的不断发展,传统的整体式微流控芯片越来越显示出局限性。模块化微流控系统是由相互连接的、独立的模块化微流控芯片组成的系统,易于使用、高度可定制且可现场部署。本文对模块化微流控系统的当前形式进行了分类和研究。还讨论了模块化模块的常用制造技术、模块化微流控的主要应用场景以及模块化技术的局限性。最后,本综述对模块化微流控技术的未来发展方向进行了展望。