Fabrication of Glass Microfluidic Chips for Studying Displacement Processes in Porous Media

IF 0.4 4区 工程技术 Q4 ENGINEERING, MULTIDISCIPLINARY
I. Sh. Garifullin, O. A. Solnyshkina, E. S. Batyrshin
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引用次数: 0

Abstract

This paper presents an effective approach to the fabrication of glass microfluidic chips for studying physical and chemical processes on the pore scale during multiphase flows in porous media, including the description of material selection, methods of microchannel formation and substrate bonding, and the fabrication of tooling for chip fixation and connection to fluid sources. The main advantage of the proposed method is related to the availability of the materials used and relative ease of fabrication. At the same time, the chips produced in this way have good mechanical properties, high optical transparency, and chemical inertness. The influence of different material-processing parameters during chip fabrication on their characteristics and properties is studied. The described experience of the authors can be used by a wide range of researchers in developing their own microfluidic platforms based on glass chips not only for studying multiphase filtration in porous media but also for chemical reactions and various studies in the field of biomedicine.

Abstract Image

用于研究多孔介质中位移过程的玻璃微流控芯片的制备
本文提出了一种用于研究多孔介质中多相流动的孔隙尺度上的物理和化学过程的玻璃微流控芯片的制造方法,包括材料的选择、微通道的形成和衬底的结合方法,以及芯片固定和连接流体源的工具的制造。所提出的方法的主要优点与所用材料的可获得性和相对易于制造有关。同时,用这种方法生产的芯片具有良好的机械性能、较高的光学透明度和化学惰性。研究了芯片制造过程中不同材料工艺参数对其特性和性能的影响。作者所描述的经验可以被广泛的研究人员用于开发他们自己的基于玻璃芯片的微流控平台,不仅用于研究多孔介质中的多相过滤,还用于化学反应和生物医学领域的各种研究。
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来源期刊
Instruments and Experimental Techniques
Instruments and Experimental Techniques 工程技术-工程:综合
CiteScore
1.20
自引率
33.30%
发文量
113
审稿时长
4-8 weeks
期刊介绍: Instruments and Experimental Techniques is an international peer reviewed journal that publishes reviews describing advanced methods for physical measurements and techniques and original articles that present techniques for physical measurements, principles of operation, design, methods of application, and analysis of the operation of physical instruments used in all fields of experimental physics and when conducting measurements using physical methods and instruments in astronomy, natural sciences, chemistry, biology, medicine, and ecology.
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