In this work, we develop a field-effect transistor with a two-dimensional channel made of a single graphene layer to achieve label-free detection of DNA hybridization down to attomolar concentration, while being able to discriminate a single nucleotide polymorphism (SNP). The SNP-level target specificity is achieved by immobilization of probe DNA on the graphene surface through a pyrene-derivative heterobifunctional linker. Biorecognition events result in a positive gate voltage shift of the graphene charge neutrality point. The graphene transistor biosensor displays a sensitivity of 24 mV/dec with a detection limit of 25 aM: the lowest target DNA concentration for which the sensor can discriminate between a perfect-match target sequence an...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
All-electronic DNA biosensors based on graphene field-effect transistors (GFETs) offer the prospect ...
© 2018 Dr. Nikolai DontschukThe field of genetics has grown rapidly since the isolation of the doubl...
Electronic DNA-biosensor with a single nucleotide resolution capability is highly desirable for pers...
Electronic DNA-biosensor with a single nucleotide resolution capability is highly desirable for pers...
A reduced graphene oxide (R-GO)-based field-effect transistor (FET) biosensor used for ultrasensitiv...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
The distinctive properties of graphene, characterized by its high carrier mobility and biocompatibil...
Single nucleotide polymorphisms (SNP) in a gene sequence are markers for variety of human diseases. ...
Single nucleotide polymorphisms (SNP) in a gene sequence are markers for variety of human diseases. ...
<p>Detection of disease-related gene expression by DNA hybridization is a useful diagnostic method. ...
Over the past decade, the richness of electronic properties of graphene has attracted enormous inter...
The distinctive properties of graphene, characterized by its high carrier mobility and biocompatibil...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
Since the discovery of graphene, and due to its unique properties, we have witnessed a growing inter...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
All-electronic DNA biosensors based on graphene field-effect transistors (GFETs) offer the prospect ...
© 2018 Dr. Nikolai DontschukThe field of genetics has grown rapidly since the isolation of the doubl...
Electronic DNA-biosensor with a single nucleotide resolution capability is highly desirable for pers...
Electronic DNA-biosensor with a single nucleotide resolution capability is highly desirable for pers...
A reduced graphene oxide (R-GO)-based field-effect transistor (FET) biosensor used for ultrasensitiv...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
The distinctive properties of graphene, characterized by its high carrier mobility and biocompatibil...
Single nucleotide polymorphisms (SNP) in a gene sequence are markers for variety of human diseases. ...
Single nucleotide polymorphisms (SNP) in a gene sequence are markers for variety of human diseases. ...
<p>Detection of disease-related gene expression by DNA hybridization is a useful diagnostic method. ...
Over the past decade, the richness of electronic properties of graphene has attracted enormous inter...
The distinctive properties of graphene, characterized by its high carrier mobility and biocompatibil...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
Since the discovery of graphene, and due to its unique properties, we have witnessed a growing inter...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
All-electronic DNA biosensors based on graphene field-effect transistors (GFETs) offer the prospect ...
© 2018 Dr. Nikolai DontschukThe field of genetics has grown rapidly since the isolation of the doubl...