Rapid and precise discrimination of various odorants is vital to fabricating enhanced sensing devices in the fields of disease diagnostics, food safety, and environmental monitoring. Here, we demonstrate an ultrasensitive and flexible field-effect transistor (FET) olfactory system, namely, a bioelectronic nose (B-nose), based on plasma-treated bilayer graphene conjugated with an olfactory receptor. The stable p-and n-type behaviors from modified bilayer graphene (MBLG) took place after controlled oxygen and ammonia plasma treatments. It was integrated with human olfactory receptors 2AG1 (hOR2AG1: OR), leading to the formation of the liquid-ion gated FET-type platform. ORs bind to the particular odorant amyl butyrate (AB), and their interact...
Since the first attempts to mimic the human nose with artificial devices, a variety of sensors have ...
Abstract We report a strategy for the human-like smelling of a rose scent utilizing olfactory recept...
Thesis: S.M. in Materials Science and Engineering and in Technology and Policy, Massachusetts Instit...
International audienceOlfaction is capable of accomplishing incredible tasks: it starts with capturi...
Single-walled carbon nanotubes (swCNTs) hold great promise for use as molecular wires because they e...
Human sensory-mimicking systems, such as electronic brains, tongues, skin, and ears, have been promo...
Graphene has been shown to have an extraordinary set of electronic properties and its chemical affin...
© 2022 American Chemical Society.Recently, various bioelectronic nose devices based on human recepto...
We developed a nanovesicle-based bioelectronic nose (NBN) that could recognize a specific odorant an...
Carbon nanotube field-effect transistors (NT-FETs) and graphene field effect transistors (GFETs) pro...
This paper reports a procedure of building a functionalized reduced graphene oxide (rGO) library and...
Get a whiff of this: Human olfactory receptor (hOR)-conjugated polypyrrole (PPy) nanotubes were inte...
The development of a sophisticated electronic nose (E-nose) system would open vast markets spanning ...
A bioelectronic nose, an intelligent chemical sensor array system coupled with bio-receptors to iden...
Various nanobiosensors composed of biomaterials and nanomaterials have been developed, due to their ...
Since the first attempts to mimic the human nose with artificial devices, a variety of sensors have ...
Abstract We report a strategy for the human-like smelling of a rose scent utilizing olfactory recept...
Thesis: S.M. in Materials Science and Engineering and in Technology and Policy, Massachusetts Instit...
International audienceOlfaction is capable of accomplishing incredible tasks: it starts with capturi...
Single-walled carbon nanotubes (swCNTs) hold great promise for use as molecular wires because they e...
Human sensory-mimicking systems, such as electronic brains, tongues, skin, and ears, have been promo...
Graphene has been shown to have an extraordinary set of electronic properties and its chemical affin...
© 2022 American Chemical Society.Recently, various bioelectronic nose devices based on human recepto...
We developed a nanovesicle-based bioelectronic nose (NBN) that could recognize a specific odorant an...
Carbon nanotube field-effect transistors (NT-FETs) and graphene field effect transistors (GFETs) pro...
This paper reports a procedure of building a functionalized reduced graphene oxide (rGO) library and...
Get a whiff of this: Human olfactory receptor (hOR)-conjugated polypyrrole (PPy) nanotubes were inte...
The development of a sophisticated electronic nose (E-nose) system would open vast markets spanning ...
A bioelectronic nose, an intelligent chemical sensor array system coupled with bio-receptors to iden...
Various nanobiosensors composed of biomaterials and nanomaterials have been developed, due to their ...
Since the first attempts to mimic the human nose with artificial devices, a variety of sensors have ...
Abstract We report a strategy for the human-like smelling of a rose scent utilizing olfactory recept...
Thesis: S.M. in Materials Science and Engineering and in Technology and Policy, Massachusetts Instit...