2023
DOI: 10.1021/acs.jpclett.3c00495
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Electrical Nanobiosensors for Nucleic Acid Based Diagnostics

Abstract: Recent advances in nanotechnologies have promoted the iterative updating of nucleic acid sensors. Among various sensing technologies, the electrical nanobiosensor is regarded as one of the most promising prospects to achieve rapid, precise, and point-of-care nucleic acid based diagnostics. In this Perspective, we introduce recent progresses in electrical nanobiosensors for nucleic acid detection. First, the strategies for improving detection performance are summarized, including chemical amplification and elec… Show more

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Cited by 5 publications
(2 citation statements)
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“…When GFET is used as a biosensor, analytes could change one or several parameters of the graphene channel under the electric field, which in turn generates variations in the current or potential signal. , Specifically, biorecognition elements are immobilized on the channel via different linkers. These elements will concentrate the targets at the solution/graphene interface (Figure d).…”
Section: Structure and Working Principle Of Gfet Biosensormentioning
confidence: 99%
“…When GFET is used as a biosensor, analytes could change one or several parameters of the graphene channel under the electric field, which in turn generates variations in the current or potential signal. , Specifically, biorecognition elements are immobilized on the channel via different linkers. These elements will concentrate the targets at the solution/graphene interface (Figure d).…”
Section: Structure and Working Principle Of Gfet Biosensormentioning
confidence: 99%
“…Nucleic acid detection is the most sensitive detection method for early viral infection and plays a key role in diagnosing and treating disease [53]. The RT-PCR method is the gold standard for detecting SARS-CoV-2, but the diagnostic process is complicated and time consuming.…”
Section: Gfet Biosensors Based On Nucleic Acid Hybridization Detectio...mentioning
confidence: 99%