A label-free impedimetric DNA biosensor based on graphene nanosheets has been developed for the detection of Escherichia coli O157:H7 strain GZ-021210. Probe DNA (pDNA) of E. coli was immobilized onto graphene nanosheets by the surface functionalization of graphene with 1-pyrenebutyric acid (PyBA) followed by carbodiimide linkage. The hybridization of complementary DNA (cDNA) of E. coli with the immobilized pDNA increased the electron transfer resistance of the graphene nanosheets, as observed by electrochemical impedance spectroscopy (EIS). The E. coli DNA biosensor displayed a wide range of linear response (1.0 1010 M to 1.0 1014 M), low detection limit (0.7 1015 M), single-base mismatch selectivity, high robustness and good reproduci...
An ultrasensitive DNA biosensor was constructed in this work by using graphene oxide nanosheets (GON...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
Bio-sensing and analysis is an important step in the lab-on-a-chip paradigm. We develop high-through...
A label-free impedimetric DNA biosensor based on graphene nanosheets has been developed for the dete...
E. coil O157:H7 is an enterohemorrhagic bacteria responsible for serious foodborne outbreaks that ca...
Graphene, which is a recently discovered single-atom-thick planar sheet of carbon atoms perfectly ...
Graphene is an allotrope of carbon with two-dimensional (2D) monolayer honeycombs. A larger detectio...
Bacteria, such as Escherichia coli (E. coli), can cause food poisoning and serious diseases. In fact...
An efficient DNA impedance biosensing platform is constructed, in which positively charged N,N-bis-(...
A low cost, reagent free, Escherichia coli sensor is demonstrated with graphene, on transparent flex...
As a new nanomaterial, graphene demonstrates great potential as an electrode for biomedical applicat...
Biosensing is paramount for improving the quality of human life. Biosensors and biosensing protocols...
Graphene displays promising features for biosensing applications. Electrochemical impedance spectros...
Sensitive electrochemical impedance assay of DNA hybridization by using a novel graphene sheets plat...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
An ultrasensitive DNA biosensor was constructed in this work by using graphene oxide nanosheets (GON...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
Bio-sensing and analysis is an important step in the lab-on-a-chip paradigm. We develop high-through...
A label-free impedimetric DNA biosensor based on graphene nanosheets has been developed for the dete...
E. coil O157:H7 is an enterohemorrhagic bacteria responsible for serious foodborne outbreaks that ca...
Graphene, which is a recently discovered single-atom-thick planar sheet of carbon atoms perfectly ...
Graphene is an allotrope of carbon with two-dimensional (2D) monolayer honeycombs. A larger detectio...
Bacteria, such as Escherichia coli (E. coli), can cause food poisoning and serious diseases. In fact...
An efficient DNA impedance biosensing platform is constructed, in which positively charged N,N-bis-(...
A low cost, reagent free, Escherichia coli sensor is demonstrated with graphene, on transparent flex...
As a new nanomaterial, graphene demonstrates great potential as an electrode for biomedical applicat...
Biosensing is paramount for improving the quality of human life. Biosensors and biosensing protocols...
Graphene displays promising features for biosensing applications. Electrochemical impedance spectros...
Sensitive electrochemical impedance assay of DNA hybridization by using a novel graphene sheets plat...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
An ultrasensitive DNA biosensor was constructed in this work by using graphene oxide nanosheets (GON...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
Bio-sensing and analysis is an important step in the lab-on-a-chip paradigm. We develop high-through...