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A Dual-Gate Field-Effect Transistor for Label-Free Electrical Detection of Avian Influenza

Authors
Kim, Jee-YeonAhn, Jae-HyukMoon, Dong-IlKim, SunghoPark, Tae JungLee, Sang YupChoi, Yang-Kyu
Issue Date
Mar-2012
Keywords
Avian influenza; Biosensor; Dual-gate; Field-effect transistor; Label-free
Citation
BioNanoScience, v.2, no.1, pp 35 - 41
Pages
7
Journal Title
BioNanoScience
Volume
2
Number
1
Start Page
35
End Page
41
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/27768
DOI
10.1007/s12668-011-0035-0
ISSN
2191-1630
2191-1649
Abstract
A dual-gate silicon nanowire field-effect transistor (FET) fabricated on a bulk substrate is designed to perform label-free electrical detection of the avian influenza antibody. A region of a FET channel that is conventionally covered by a gate electrode is intentionally left open in the dual-gate configuration, to provide a binding site for biological species. As a result, the channel potential at this open area is affected by the polarity and charge of the biological species that binds to the opened channel. The proposed device can be used as a biosensor by comparing its electrical characteristics before and after exposing the device to biological species of interest. This detection mechanism is verified using numerical simulation and by attaching charged polyelectrolytes (PAH and PSS) to the opened channel. Additionally, the avian influenza antibody is successfully detected without a labeling step using the proposed dual-gate FET. As a biomedical diagnostic tool, the proposed biosensor offers the advantages of label-free detection capability, low-cost compatibility with the complementary metal-oxide semiconductor fabrication process, and a read-out system for on-chip integration. © 2012 Springer Science+Business Media, LLC.
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자연과학대학 (화학과)
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