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Label-free detection of DNA hybridization using transistors based on CVD grown graphene
Journal article   Peer reviewed

Label-free detection of DNA hybridization using transistors based on CVD grown graphene

Tzu-Yin Chen, Phan Thi Kim Loan, Chang-Lung Hsu, Yi-Hsien Lee, Jacob Tse-Wei Wang, Kung-Hwa Wei, Cheng-Te Lin and Lain-Jong Li
Biosensors and Bioelectronics, Vol.41(1), pp.103-109
15/03/2013

Abstract

CVD graphene DNA sensing Gold-transfer method Label-free detection Liquid-gated transistors
The high transconductance and low noise of graphene-based field-effect transistors based on large-area monolayer graphene produced by chemical vapor deposition are used for label-free electrical detection of DNA hybridization. The gate materials, buffer concentration and surface condition of graphene have been optimized to achieve the DNA detection sensitivity as low as 1pM (10 -12 M), which is more sensitive than the existing report based on few-layer graphene. The graphene films obtained using conventional PMMA-assisted transfer technique exhibits PMMA residues, which degrade the sensing performance of graphene. We have demonstrated that the sensing performance of the graphene samples prepared by gold-transfer is largely enhanced (by 125%). © 2012 Elsevier B.V.

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