Ultrasensitive Field-Effect Biosensors Enabled by the Unique Electronic Properties of Graphene
arXiv:2012.06059 · doi:10.1002/smll.201902820
Abstract
This review provides a critical overview of current developments on nanoelectronic biochemical sensors based on graphene. Composed of a single layer of conjugated carbon atoms, graphene has outstanding high carrier mobility and low intrinsic electrical noise, but a chemically inert surface. Surface functionalization is therefore crucial to unravel graphene sensitivity and selectivity for the detection of targeted analytes. To achieve optimal performance of graphene transistors for biochemical sensing, the tuning of the graphene surface properties via surface functionalization and passivation is highlighted, as well as the tuning of its electrical operation by utilizing multifrequency ambipolar configuration and a high frequency measurement scheme to overcome the Debye screening to achieve low noise and highly sensitive detection. Potential applications and prospectives of ultrasensitive graphene electronic biochemical sensors ranging from environmental monitoring and food safety, healthcare and medical diagnosis, to life science research, are presented as well.
24 pages, 9 figures
References in corpus (21)
- Electric Field Effect in Atomically Thin Carbon Films
- Detection of Individual Gas Molecules Absorbed on Graphene
- Boron nitride substrates for high-quality graphene electronics
- Control of graphene's properties by reversible hydrogenation
- Electrochemically Top Gated Graphene: Monitoring Dopants by Raman Scattering
- Intrinsic and Extrinsic Performance Limits of Graphene Devices on SiO2
- Atomic Structure of Graphene on SiO2
- Fluorographene: Two Dimensional Counterpart of Teflon
- A self-consistent theory for graphene transport
- Intrinsic Response of Graphene Vapor Sensors
- Chemical reactivity imprint lithography on graphene: Controlling the substrate influence on electron transfer reactions
- Structure determination and coexistence of superconductivity and antiferromagnetic order in (Li0.8Fe0.2)OHFeSe
- Strong Suppression of Electrical Noise in Bilayer Graphene Nano Devices
- Oriented Graphene Nanoribbons Embedded in Hexagonal Boron Nitride Trenches
- Scalable Production of Highly-Sensitive Nanosensors Based on Graphene Functionalized with a Designed G Protein-Coupled Receptor
- Flexible and Transparent All-Graphene Circuits for Quaternary Digital Modulations
- High-Transconductance Graphene Solution-Gated Field Effect Transistors
- Room-temperature ultrafast non-linear spectroscopy of a single molecule
- A Silicon Nanowire Ion-Sensitive Field-Effect-Transistor with elementary charge sensitivity
- Large-scale BN tunnel barriers for graphene spintronics
- Noncovalent functionalization of carbon nanotubes and graphene with tetraphenylporphyrins: Stability and optical properties from ab-initio calculations