Logo image
Fabrication of high-aspect-ratio 3D hydrogel microstructures using optically induced electrokinetics
期刊文章   開放取用(OA)

Fabrication of high-aspect-ratio 3D hydrogel microstructures using optically induced electrokinetics

Yi Li, Sam H.S. Lai, Na Liu, Guanglie Zhang, Lianqing Liu, Gwo-Bin LeeWen Jung Li
Micromachines, 卷.7(4), 65
2016

摘要

3D polymer structures Hydrogel microstructures Optically induced electrokinetics Polymer microfabrication Control and Systems Engineering Mechanical Engineering Electrical and Electronic Engineering
We present a rapid hydrogel polymerization and prototyping microfabrication technique using an optically induced electrokinetics (OEK) chip, which is based on a non-UV hydrogel curing principle. Using this technique, micro-scale high-aspect-ratio three-dimensional polymer features with different geometric sizes can be fabricated within 1-10 min by projecting pre-defined visible light image patterns onto the OEK chip. This method eliminates the need for traditional photolithography masks used for patterning and fabricating polymer microstructures and simplifies the fabrication processes. This technique uses cross-link hydrogels, such as poly(ethylene glycol) (PEG)-diacrylate (PEGDA), as fabrication materials. We demonstrated that hydrogel micropillar arrays rapidly fabricated using this technique can be used as molds to create micron-scale cavities in PDMS (polydimethylsiloxane) substrates. Furthermore, hollow, circular tubes with controllable wall thicknesses and high-aspect ratios can also be fabricated. These results show the potential of this technique to become a rapid prototyping technology for producing microfluidic devices. In addition, we show that rapid prototyping of three-dimensional suspended polymer structures is possible without any sacrificial etching process.

檔案與連結 (1)

url
https://doi.org/10.3390/mi7040065檢視
已出版(紀錄版本) 開放

相關連結

指標

1 檢視次數

詳細資料

Logo image