Original title:
Optimized 3D Resin Printing for Microfluidic Chip Fabrication
Authors:
Jarušek, Jaromír ; Gablech, Imrich Document type: Papers
Language:
eng Publisher:
Vysoké učení technické v Brně, Fakulta elektrotechniky a komunikačních technologií Abstract:
This paper presents and evaluates printed microfluidic chips using a consumer-grade resin printer. Two fabrication approaches are explored, focusing on the detailed fabrication workflow of open-channel and embedded-channel-based Tesla mixers, followed by a chamber for electrochemistry . The structure of fabricated chips was evaluated using optical and scanning electron microscopy and consequently tested by dye channel visualization . Furthermore, the chips had bulk electrodes for three-electrode cyclic voltammetry measurements. The solution flow was controlled using an automated microfluidic workstation .
Keywords:
Additive manufacturing; Electrochemical sensing; Masked Stereolithography (MSLA); Optical transparency; Scanning Electron Microscopy; Tesla micromixers Host item entry: Proceedings I of the 31st Conference STUDENT EEICT 2025: General papers, ISBN 978-80-214-6321-9
Institution: Brno University of Technology
(web)
Document availability information: Fulltext is available in the Brno University of Technology Digital Library. Original record: https://hdl.handle.net/11012/255298