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基于纹理结构的液态金属填充盲端微通道及其在多层芯片上的应用

Texture-structure-based liquid metal filling for blind-end microchannels and its application on multi-layer chips.

作者信息

Li Yuqing, Zhang Huimin, Li Qian, Deng Yuqin, Ye Zi, Gui Lin

机构信息

Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences 29 Zhongguancun East Road, Haidian District Beijing 100190 China

School of Future Technology, University of Chinese Academy of Sciences Beijing 10039 China.

出版信息

RSC Adv. 2023 Aug 14;13(35):24228-24236. doi: 10.1039/d3ra04497a. eCollection 2023 Aug 11.

Abstract

This research work reports a novel method to achieve fast liquid metal (LM) injection in blind-end microchannels which is especially suitable for multi-layer microfluidic chips. This method is based on a texture-like surface bonding technology. The texture-like surface is fabricated on a polydimethylsiloxane (PDMS) slab with standard soft-lithography technology and bonded with another PDMS slab with microelectrode patterns on it. When injected with LM, the texture-like structure can prevent the LM from entering but allows the air inside to be released during the injection to achieve perfect blind-end complex LM electrodes. The experimental results show that it can achieve fast and perfect LM injection in the blind-end pattern and can also prevent the large area of the flat chamber from collapsing during bonding. We also parametrically studied the texture structure's size for bonding strength between the texture structure and the blank PDMS surface. In addition, we integrate three layers of blind-end complex liquid metal patterns into one multi-layer chip using this technology and later use this structure to realize series connection of two LM-based electroosmotic micropumps (EOP). Compared with the conventional LM-based EOP, the structure of the EOP chip was greatly simplified and resulted in a higher level of integration.

摘要

本研究工作报道了一种在盲端微通道中实现快速液态金属(LM)注入的新方法,该方法特别适用于多层微流控芯片。此方法基于一种纹理状表面键合技术。通过标准软光刻技术在聚二甲基硅氧烷(PDMS)平板上制备纹理状表面,并将其与上面带有微电极图案的另一个PDMS平板键合。当注入液态金属时,纹理状结构可防止液态金属进入,但在注入过程中允许内部空气排出,以实现完美的盲端复杂液态金属电极。实验结果表明,它能在盲端图案中实现快速且完美的液态金属注入,还能防止在键合过程中大面积的扁平腔室塌陷。我们还对纹理结构的尺寸进行了参数研究,以探讨其与空白PDMS表面之间的键合强度。此外,我们利用该技术将三层盲端复杂液态金属图案集成到一个多层芯片中,随后使用此结构实现了两个基于液态金属的电渗微泵(EOP)的串联连接。与传统的基于液态金属的电渗微泵相比,电渗微泵芯片的结构大大简化,集成度更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79f2/10424060/261278382a8d/d3ra04497a-f1.jpg

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