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When compared with hRGO FET devices, however, the mean relative changes in the conductance upon exposure to E. coli were significantly lower, despite the higher concentration of SWNTs on the device surface, as seen previously.
The devices were primed with HBSS with 2% bovine serum albumin (Sigma-Aldrich) to prevent nonspecific cell adhesion to the device surface and remove bubbles from the device.
The operation of Schottky barrier diodes relies upon the device characteristics of the MS junction.
Acceptance depended strongly upon the device.
Depending upon the device, certain physicochemical factors can impair measurement accuracy.
As the device is moved along the surface, the charge remains relatively constant.
To make matters worse, the device is either a Surface or a Surface Pro.
After a few minutes, the device detached from the surface and floated to the surface.
Interestingly, upon surface modifications, the pH and enzymatic reaction sensing behaviors of the device became dependent on the PANI/DNNSA layer, proving that open circuit potentiometric (OCP) responses can be transferred to ISFGFETs.
Also, the high surface to volume ratio within the device, coupled with flow, increases the immunocomplex surface interactions and immobilization.
This is a perfect use case for the Surface 2, in that I was on the go, needed to 'get shit done,' and had a hard surface to set the device upon.
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