Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7140307 | Sensors and Actuators B: Chemical | 2018 | 23 Pages |
Abstract
We report a dual-gate nanoribbon-based ion-sensitive field-effect transistor (NR-ISFET) biosensor system for direct label-free detection of Cordyceps sinensis's DNA (CorDNA) by conductance measurements of the NR-ISFET biosensors, where sample delivery can be conducted by a cavity or microchannel. Compared with conventional methods, the NR-ISFET biosensors demonstrate smaller sample amount and shorter detection time. Especially the measurements in a microchannel at dual-gate (DG) mode exhibit a better sensitivity of 0.5054â¯mS/dec in a wide dynamic range spanning four orders of magnitude, a lower limit of detection (LOD) of 50â¯pM, and significantly improved specificity as compared to these with single solution-gate (SG). Moreover, the performance of the NR-ISFET biosensor system can be improved in a microchannel in comparison with a cavity, which may be attributed to better surface modification in a microchannel with larger DNA probe density on the sensing surface.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Shenhui Ma, Yi-Kuen Lee, Anping Zhang, Xin Li,