Suppr超能文献

用于紧凑型高通量介电泳微流控的毛细作用驱动大阵列液态金属电极

Capillarity Enabled Large-Array Liquid Metal Electrodes for Compact and High-Throughput Dielectrophoretic Microfluidics.

作者信息

Chai Huichao, Zhu Junwen, Feng Yongxiang, Liang Fei, Wu Qiyan, Ju Zhongjian, Huang Liang, Wang Wenhui

机构信息

State Key Laboratory of Precision Measurement Technology and Instrument, Department of Precision Instrument, Tsinghua University, Beijing, 100084, P. R. China.

The First Medical Center of PLA General Hospital, Beijing, 100853, P. R. China.

出版信息

Adv Mater. 2024 May;36(21):e2310212. doi: 10.1002/adma.202310212. Epub 2024 Jan 28.

Abstract

Dielectrophoresis (DEP) particle separation has label-free, well-controllable, and low-damage merits. Sidewall microelectrodes made of liquid metal alloy (LMA) inherits the additional advantage of thick electrodes to generate impactful DEP force. However, existing LMA electrode-based devices lack the ability to integrate large-array electrodes in a compact footprint, severely limiting flow rate and thus throughput. Herein, a facile and versatile method is proposed to integrate high-density thick LMA electrodes in microfluidic devices, taking advantage of the passive control ability of capillary burst valves (CBVs). CBVs with carefully designed burst pressures are co-designed in microfluidic channels, allowing self-assembly of LMA electrode array through simple hand-push injection. The arrayed electrode configuration brings the accumulative DEP deflection effect. Specifically, The fabricated 5000 pairs of sidewall electrodes in a compact chip are demonstrted to achieve ten times higher throughput in DEP deflection. The 5000-electrode-pair device is applied to successfully separate four mixed samples, including human peripheral blood mononuclear cells and A549 cells with the flow rate of 70 µL min. It is envisioned that this work can greatly facilitate LMA electrode array fabrication and offer a robust and versatile platform for DEP separation applications.

摘要

介电电泳(DEP)粒子分离具有无标记、可控性好和损伤低的优点。由液态金属合金(LMA)制成的侧壁微电极继承了厚电极的额外优势,能够产生强大的DEP力。然而,现有的基于LMA电极的设备缺乏在紧凑尺寸内集成大阵列电极的能力,严重限制了流速,进而限制了通量。在此,提出了一种简便通用的方法,利用毛细管破裂阀(CBV)的被动控制能力,在微流控设备中集成高密度厚LMA电极。在微流控通道中共同设计具有精心设计破裂压力的CBV,通过简单的手动推注实现LMA电极阵列的自组装。阵列电极配置带来了累积的DEP偏转效应。具体而言,在一个紧凑芯片中制造的5000对侧壁电极在DEP偏转方面实现了十倍更高的通量。该5000电极对的设备成功应用于分离四个混合样本,包括人外周血单核细胞和A549细胞,流速为70 μL/min。预计这项工作能够极大地促进LMA电极阵列的制造,并为DEP分离应用提供一个强大且通用的平台。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验