TY - GEN
T1 - Two benches PDMS free flow electrophoresis chip
AU - Wang, Wei
AU - Tian, Li
AU - Han, Xiaowei
AU - Zhao, Lin
AU - Ye, Guohua
AU - Zhang, Haifeng
AU - Liu, Xiaowei
PY - 2014
Y1 - 2014
N2 - This paper puts forward a kind of two benches structure of the glass-PDMS free flow electrophoresis chip. We use die casting method to produce microstructure, and use PDMS as its structure layer. The mold is made in tape-PMMA by micro cementing technology. During the progress of PDMS curing, gold wires are directly integrated in the electrode groove to form the chip's electrodes. PDMS and glass are sealed in natural bonding method. Chip's glass surface of separation chamber realizes the modification through sticking polyimide tape. Visual technology is conducted for chip electrophoresis separation. The sample is the mixture of methyl green and Rhodamine B. The separation effect of methyl green and Rhodamine B is obvious when the electric field is 31 V/cm. the "two benches" between the electrode groove and the separation chamber block the electrolytic bubbles into the separation chamber. When the separation chamber height is 70 μm and the electric field is 50 V/cm, the air bubbles can be glidingly discharged from electrode groove. The sample's steady separation time is more than 2 hours, and this free flow electrophoresis chip realizes continuous work.
AB - This paper puts forward a kind of two benches structure of the glass-PDMS free flow electrophoresis chip. We use die casting method to produce microstructure, and use PDMS as its structure layer. The mold is made in tape-PMMA by micro cementing technology. During the progress of PDMS curing, gold wires are directly integrated in the electrode groove to form the chip's electrodes. PDMS and glass are sealed in natural bonding method. Chip's glass surface of separation chamber realizes the modification through sticking polyimide tape. Visual technology is conducted for chip electrophoresis separation. The sample is the mixture of methyl green and Rhodamine B. The separation effect of methyl green and Rhodamine B is obvious when the electric field is 31 V/cm. the "two benches" between the electrode groove and the separation chamber block the electrolytic bubbles into the separation chamber. When the separation chamber height is 70 μm and the electric field is 50 V/cm, the air bubbles can be glidingly discharged from electrode groove. The sample's steady separation time is more than 2 hours, and this free flow electrophoresis chip realizes continuous work.
KW - Free flow electrophoresis chip
KW - Free flow electrophoresis separation
KW - Micro total analysis system
UR - https://www.scopus.com/pages/publications/84900398024
U2 - 10.4028/www.scientific.net/KEM.609-610.769
DO - 10.4028/www.scientific.net/KEM.609-610.769
M3 - 会议稿件
AN - SCOPUS:84900398024
SN - 9783038350712
T3 - Key Engineering Materials
SP - 769
EP - 774
BT - Micro-Nano Technology XV
PB - Trans Tech Publications Ltd
T2 - 15th Annual Conference and 4th International Conference of the Chinese Society of Micro-Nano Technology, CSMNT 2013
Y2 - 3 November 2013 through 6 November 2013
ER -