Great enhancement of sensitivity for SARS-CoV-2 detection by integrated graphene FET biosensor using potential modulator

Kaori Yamamoto, Natsuki Sato, Kiyoji Sakano, Mamiko Yano, Eriko Ohnishi,Takao Ono,Yasushi Kanai,Shota Ushiba,Naruto Miyakawa,Shinsuke Tani, Masahiko Kimura, Yohei Watanabe, Koichi Inoue, Hidekazu Tanaka,Kazuhiko Matsumoto

JAPANESE JOURNAL OF APPLIED PHYSICS(2024)

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Abstract
By modulating a zeta potential of graphene FET (G-EFT), the sensitivity of G-FET could be enhanced than that without modulation. Therefore, 1 x 107 FFU ml-1 SARS-CoV-2 was detected using G-FET modified with the zeta potential modulator which is the cation polymer with the positive charge. This method is based on the relationship between the surface charge and the sensitivity, in which the highest sensitivity is obtained when the zeta potential is 0 and/or the surface charge is almost 0. In this study, the microfluidic channel was installed on G-FET to get the precise result because it could wash away the free-floating virus and the physical adsorbed virus. 32 G-FETs including the reference FETs were integrated on the silicon substrate and the precise results were obtained by subtracting the noise terms.
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Key words
graphene,biosensor,SARS-CoV-2,sigma potential,influenza virus,FET,antibody
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