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The Integration of Reference Electrode for ISFET Ion Sensors Using Fluorothiophenol-Treated rGO

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Author(s)
Dae Hoon KimHae Shin ChoJin Heung KimDa Ae JoHong Gi OhByoung Kuk JangKwang Soup Song
Keimyung Author(s)
Jang, Byoung Kuk
Department
Dept. of Internal Medicine (내과학)
Journal Title
Biosensors (Basel)
Issued Date
2023
Volume
13
Issue
1
Keyword
fluorinated graphene oxidefluorothiophenolindium tin oxideion sensorion-sensitive field-effect transistorsreference electrode
Abstract
Ion-sensitive field-effect transistors (ISFETs) detect specific ions in solutions that enable straightforward, fast, and inexpensive sensors compared to other benchtop equipment. However, a conventional reference electrode (RE) such as Ag/AgCl is limited on the miniaturization of the sensor. We introduce reduced graphene oxide (rGO), which serves as a new RE, when fluorinated (F-rGO) using fluorothiophenol through the π-π interaction. The circular RE is integrated between a fabricated microscale two-channel ISFET, which is capable of detecting two kinds of ions on an indium tin oxide (ITO) thin-film substrate, using the photolithography process. F-rGO bound to this circular region to function as an RE in the ISFETs sensor, which operated stably in solution and showed a relatively high transconductance (gm) value (1.27 mS), low drift characteristic (3.2 mV), and low hysteresis voltage (±0.05 mV). It detected proton (H+) ions in a buffer solution with high sensitivity (67.1 mV/pH). We successfully detected Na+ (62.1 mV/dec) and K+ (57.6 mV/dec) ions in human patient urine using a two-channel ISFET with the F-rGO RE. The F-rGO RE will be a suitable component in the fabrication of low-cost, mass-produced, and disposable ISFETs sensors.
Keimyung Author(s)(Kor)
장병국
Publisher
School of Medicine (의과대학)
Type
Article
ISSN
2079-6374
Source
https://www.mdpi.com/2079-6374/13/1/89
DOI
10.3390/bios13010089
URI
https://kumel.medlib.dsmc.or.kr/handle/2015.oak/44829
Appears in Collections:
1. School of Medicine (의과대학) > Dept. of Internal Medicine (내과학)
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