A reduced graphene oxide (R-GO)-based field-effect transistor (FET) biosensor used for ultrasensitive label-free detection of DNA via peptide nucleic acid (PNA) DNA hybridization is reported. In this work, R-GO was prepared by reduction of GO with hydrazine, and the FET biosensor was fabricated by drop-casting the R-GO suspension onto the sensor surface. PNA instead of DNA as the capture probe was employed, and DNA detection was performed through PNA DNA hybridization by the R-GO FET biosensor. The detection limit as low as 100 fM was achieved, which is 1 order of magnitude lower than that of the previously reported graphene FET DNA biosensor based on DNA DNA hybridization. Moreover, the R-GO FET biosensor was able to distinguish the comple...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
The distinctive properties of graphene, characterized by its high carrier mobility and biocompatibil...
Research has focused on graphene for developing the next generation of label-free biosensors, capabl...
Most graphene field-effect transistor (G-FET) biosensors are fabricated through a routine process, i...
In this work, we develop a field-effect transistor with a two-dimensional channel made of a single g...
All-electronic DNA biosensors based on graphene field-effect transistors (GFETs) offer the prospect ...
Electronic DNA-biosensor with a single nucleotide resolution capability is highly desirable for pers...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
Electronic DNA-biosensor with a single nucleotide resolution capability is highly desirable for pers...
In order to explore the application of graphene field effect transistor (FET) nucleic acid biosensor...
Early detection is proven to be the best chance for successful cancer treatment. MiRNAs, as ideal bi...
<p>Detection of disease-related gene expression by DNA hybridization is a useful diagnostic method. ...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
We demonstrate an electrochemical sensor for detection of unlabeled single-stranded DNA using peptid...
We demonstrate an electrochemical sensor for detection of unlabeled single-stranded DNA using peptid...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
The distinctive properties of graphene, characterized by its high carrier mobility and biocompatibil...
Research has focused on graphene for developing the next generation of label-free biosensors, capabl...
Most graphene field-effect transistor (G-FET) biosensors are fabricated through a routine process, i...
In this work, we develop a field-effect transistor with a two-dimensional channel made of a single g...
All-electronic DNA biosensors based on graphene field-effect transistors (GFETs) offer the prospect ...
Electronic DNA-biosensor with a single nucleotide resolution capability is highly desirable for pers...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
Electronic DNA-biosensor with a single nucleotide resolution capability is highly desirable for pers...
In order to explore the application of graphene field effect transistor (FET) nucleic acid biosensor...
Early detection is proven to be the best chance for successful cancer treatment. MiRNAs, as ideal bi...
<p>Detection of disease-related gene expression by DNA hybridization is a useful diagnostic method. ...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
We demonstrate an electrochemical sensor for detection of unlabeled single-stranded DNA using peptid...
We demonstrate an electrochemical sensor for detection of unlabeled single-stranded DNA using peptid...
Biosensors are devices that translate biological responses into electrical signals. They have many a...
The distinctive properties of graphene, characterized by its high carrier mobility and biocompatibil...
Research has focused on graphene for developing the next generation of label-free biosensors, capabl...