Graphene is a two-dimensional material with extremely favorable chemical sensor properties. Conventional nanolithography typically leaves a resist residue on the graphene surface, whose impact on the sensor characteristics has not yet been determined. Here we show that the contamination layer chemically dopes the graphene, enhances carrier scattering, and acts as an absorbent layer that concentrates analyte molecules at the graphene surface, thereby enhancing the sensor response. We demonstrate a cleaning process that veriliably removes the contamination on the device structure and allows the intrinsic chemical responses of the graphene monolayer to be measured. These intrinsic responses are surprisingly small, even upon exposure to strong ...
Advanced sensing techniques require graphene with high quality and well-controlled surface chemistry...
Graphene and other 2d materials have shown great promise for their ability to sense chemicals. This ...
The primary objective of this work is to demonstrate a novel sensor system as a convenient vehicle f...
Graphene is a two-dimensional material with extremely favorable chemical sensor properties. Conventi...
Molecular doping and detection are at the forefront of graphene research, a topic of great interest ...
Graphene as an atom-thick carbon material is promising for the detection of gaseous molecules owing ...
AbstractThe high sensitivity of graphene to the adsorption/desorption of gas molecule, is at the ver...
A fundamental understanding of chemical sensing mechanisms in graphene-based chemical field-effect t...
Graphene is suitable for use as a high-performance sensor material due to its unique atomically-thin...
Graphene is suitable for sensor applications. Its highest surface-to-volume ratio makes graphene sen...
Graphene is a two-dimensional material with exceptional electronic properties and enormous potential...
The crystal structure of graphene flakes is expected to significantly affect their sensing propertie...
Graphene (G) is a two-dimensional material with exceptional sensing properties. In general, graphene...
Chemical/biological sensors serve many purposes in protecting machinery, the environment, and human ...
Recent advances in the large-scale production of graphene have led to the availability of solution-p...
Advanced sensing techniques require graphene with high quality and well-controlled surface chemistry...
Graphene and other 2d materials have shown great promise for their ability to sense chemicals. This ...
The primary objective of this work is to demonstrate a novel sensor system as a convenient vehicle f...
Graphene is a two-dimensional material with extremely favorable chemical sensor properties. Conventi...
Molecular doping and detection are at the forefront of graphene research, a topic of great interest ...
Graphene as an atom-thick carbon material is promising for the detection of gaseous molecules owing ...
AbstractThe high sensitivity of graphene to the adsorption/desorption of gas molecule, is at the ver...
A fundamental understanding of chemical sensing mechanisms in graphene-based chemical field-effect t...
Graphene is suitable for use as a high-performance sensor material due to its unique atomically-thin...
Graphene is suitable for sensor applications. Its highest surface-to-volume ratio makes graphene sen...
Graphene is a two-dimensional material with exceptional electronic properties and enormous potential...
The crystal structure of graphene flakes is expected to significantly affect their sensing propertie...
Graphene (G) is a two-dimensional material with exceptional sensing properties. In general, graphene...
Chemical/biological sensors serve many purposes in protecting machinery, the environment, and human ...
Recent advances in the large-scale production of graphene have led to the availability of solution-p...
Advanced sensing techniques require graphene with high quality and well-controlled surface chemistry...
Graphene and other 2d materials have shown great promise for their ability to sense chemicals. This ...
The primary objective of this work is to demonstrate a novel sensor system as a convenient vehicle f...