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喷墨打印数字微流控芯片在柔性衬底上的全范围液滴驱动集成。

Integrated Full-Range Droplet Actuation for Inkjet-Printed Digital Microfluidic Chip on Flexible Substrates.

出版信息

IEEE Trans Nanobioscience. 2022 Jan;21(1):10-20. doi: 10.1109/TNB.2021.3113307. Epub 2021 Dec 30.

DOI:10.1109/TNB.2021.3113307
PMID:34529569
Abstract

Flexible printed electronic technology makes it possible to fabricate low-cost digital microfluidic (DMF) chips. Inkjet printing on flexible substrates is one of the most cost-effective fabrication processes for DMF chips. Based on inkjet printing technology and simplified coating methods of dielectric and hydrophobic layers, we fabricated low-cost flexible DMF chips (FDMFCs) on PET sheet and on matte photo paper. The surface quality, conductivity and spatial output resolution of the silver lines under different number of printings, different line widths and line gaps on the two types of FDMFCs were comprehensively analyzed. The traditional square dispensing electrodes were optimized to reduce the volume error of the droplets generated during the repeated dispensing operations. Droplets can be driven to implement all the operations on various configurations of FDMFCs by electrowetting-on-dielectric, including closed configuration, open configuration, hybrid configuration composed of closed and open regions on a single chip, and open curved configuration, which are defined as full-range droplet actuation. The droplet motion between closed and open regions in two position modes of the top plate was deeply studied. Droplet operation experiments prove that the motion performance of droplets can be comparable to that of chips processed by traditional technology, and the rapid prototyping technology of the FDMFCs can make the performance of droplet operation mainly depend on the conductivity of the electrode layer and the electrode gap and greatly weaken the influence of the substrate surface quality on the FDMFCs.

摘要

柔性印刷电子技术使得制造低成本的数字微流控(DMF)芯片成为可能。在柔性基板上进行喷墨打印是制造 DMF 芯片最具成本效益的制造工艺之一。基于喷墨打印技术和简化的介电层和疏油层涂覆方法,我们在 PET 片材和亚光相纸上制造了低成本的柔性 DMF 芯片(FDMFC)。综合分析了两种 FDMFC 上不同打印次数、不同线宽和线隙下银线的表面质量、导电性和空间输出分辨率。对传统的方形分配电极进行了优化,以减少在重复分配操作过程中产生的液滴的体积误差。通过介电上电润湿,可以将液滴驱动到各种配置的 FDMFC 上执行所有操作,包括封闭配置、开放配置、单个芯片上的封闭和开放区域组成的混合配置以及开放的弯曲配置,这些配置定义为全范围液滴致动。深入研究了顶板两个位置模式下封闭区域和开放区域之间的液滴运动。液滴操作实验证明,液滴的运动性能可以与传统技术处理的芯片相媲美,并且 FDMFC 的快速原型制作技术可以使液滴操作的性能主要取决于电极层的导电性和电极间隙,并大大减弱基底表面质量对 FDMFC 的影响。

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