2 Bio-microelectromechanical Systems (BioMEMS) …
51
Fig. 2.12 a Schematic of fabrication process, b and c positive and negative features of 2D channels
of C-μPAD (Lam et al. 2017)
3 ng/dL which again presented similar results as those of the commercial platforms.
However, for nickel, a colorimetric agent was immobilized to obtain a stationary
and uniform reaction through thermal condensation coupling method. This resulted
in the detection of nickel with a LOD as low as 150 μg/dL. These LODs provided
high expandability and adaptability for the device. With these results, this C-μPAD
produced simple, quick, and cost-effective bioassays for environmental monitoring.
51
Fig. 2.12 a Schematic of fabrication process, b and c positive and negative features of 2D channels
of C-μPAD (Lam et al. 2017)
3 ng/dL which again presented similar results as those of the commercial platforms.
However, for nickel, a colorimetric agent was immobilized to obtain a stationary
and uniform reaction through thermal condensation coupling method. This resulted
in the detection of nickel with a LOD as low as 150 μg/dL. These LODs provided
high expandability and adaptability for the device. With these results, this C-μPAD
produced simple, quick, and cost-effective bioassays for environmental monitoring.
