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http://dx.doi.org/10.14775/ksmpe.2016.15.6.122

Implementation of Biosensor Pattern Using Micro Patterning Technique  

Ko, Jeong Beom (Korea Institute of Industrial Technology)
Kim, Hyung Chan (Korea Institute of Industrial Technology)
Yang, Young Jin (Department of Mechatronics Engineering, Jeju UNIV.)
Kim, Hyun Bum (Department of Mechatronics Engineering, Jeju UNIV.)
Yang, Seong Wook (Department of Electronic Engineering, Jeju UNIV.)
Oh, Seung Ho (Department of Electronic Engineering, Jeju UNIV.)
Doh, Yang Hoi (Department of Electronic Engineering, Jeju UNIV.)
Choi, Kyung Hyun (Department of Mechatronics Engineering, Jeju UNIV.)
Publication Information
Journal of the Korean Society of Manufacturing Process Engineers / v.15, no.6, 2016 , pp. 122-128 More about this Journal
Abstract
The Biosensor biosensor pattern was developed by via an EHD (electro-hydro-dynamics (EHD) patterning process that was performed under atmospheric pressure at room temperature in a single step. The drop diameter was smaller than nozzle diameter and applied high viscosity conductive ink was applied in the EHD patterning method to provide a clear advantage over the piezo and thermal inkjet printing techniques. The Biosensor's biosensor's micro electrode pattern was printed by via a continuous EHD patterning method using 3three- type types of control parameters parameter (input voltage, patterning speed, nozzle pressure). High viscosity (1000 cps) conductive ink with 75 wt% of silver nanoparticles was used for experimentation. The incremental result of impedance of biosensor impedance was measured between the antibody ($10ug{\mu}g/ml$) to spore (0.1 ng/ml, 10 ng/ml, and $1ug{\mu}g./ml$) reaction at frequency 493 MHz frequency.
Keywords
Biosensor; EHD Patterning; Micro Electrode; High Viscosity Conductive Ink;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
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