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Modification of poly(dimethylsiloxane) microfluidic channels with silica nanoparticles based on layer-by-layer assembly technique

Year: 2006

Journal: Journal of Chromatography A 1136 (2006) 111-117, 20111221

Authors: Wei Wang, Liang Zhao, Jian-Rong Zhang, Xue-Mei Wang, Jun-Jie Zhu, Hong-Yuan Chen

Organizations: Department of Chemistry, Key Lab of Analytical Chemistry for Life Science, Nanjing University, Nanjing 210093, China; School of Chemical and Biological Engineering, Yancheng Institute of Technology, Yancheng 224003, China; State Key Lab of Bioelectronics, Southeast University, Nanjing 210009, China

A hydrophilic poly(dimethylsiloxane) (PDMS) microchip with stable electroosmotic flow (EOF) was prepared by a simple and reproducible coating procedure with silica nanoparticles. The microchannel wall of PDMS chip was coated with a layer of poly(diallyldimethylammoniumchloride) (PDDA) and then collected silica nanoparticles. The assembly was followed by contact angle, charge-coupled device (CCD) imaging, electroosmotic flow (EOF) measurements and electrophoretic separation experiments. Contact angle measurements revealed the coated surface was hydrophilic; the water contact angle for coated chips was 64o compared with a water contact angle for native PDMS chips of 113o. CCD images indicated a substantially more hydrophilic microchannel than native PDMS. We carried out a comparison and concluded that the EOF values on the coated PDMS chip were close to those values on the glass chip above pH 7.0. The coated channel had an excellent stability andreproducibility, RSD of EOF values (n = 6) on native and coated PDMS microchip was 1.58 and 0.57%, respectively. Separation of dopamine and epinephrine was performed on the coated chip generated 1.40x105, 1.39x105 theoretical plates/m compared with the native PDMS chip of 0.79x105, 0.88x105, high resolution of 1.7 was achieved with a channel of 3.60 cm length.