In this contribution, taking the discrimination ability of graphene over single-stranded (ss) DNA/double-stranded (ds) DNA in combination with the electrochemical impedance transducer, we developed a novel label-free homogeneous electrochemical biosensor using graphene-modified glassy carbon electrode (GCE) as the sensing platform. To convert the specific aptamer-target recognition into ultrasensitive electrochemical signal output, a novel aptamer-switched bidirectional DNA polymerization (BDP) strategy, capable of both target recycling and exponential signal amplification, was compatibly developed in this study. In this strategy, all the designed DNA structures could be adsorbed on the graphene/GCE and, thus, serve as the electrochemical i...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
Graphene, a single atom thick layer of two-dimensional closely packed honeycomb carbon lattice, and ...
Abstract A simple, signal-off and reusable electrochemical biosensor was developed for sensitive and...
An efficient DNA impedance biosensing platform is constructed, in which positively charged N,N-bis-(...
In this work, we develop a field-effect transistor with a two-dimensional channel made of a single g...
Graphene oxide nanowalls with extremely sharp edges and preferred vertical orientation were deposite...
In this work, we report a low-cost and easy operation biosensor platform capable of detection of var...
Graphene (GN), a two-dimensional and one-atom thick carbon sheet, is showing exciting applications b...
Since the discovery of graphene, and due to its unique properties, we have witnessed a growing inter...
Biosensing is paramount for improving the quality of human life. Biosensors and biosensing protocols...
Aptamers are ssDNA/RNA that can bind to specific targets with high affinity and selectivity. Graphen...
In this work, we proposed a novel simple protocol for preparing 1-aminopyrene/graphene (ApG) hybrids...
There is an emerging interest in developing electrochemical DNA biosensors which rely on label-free ...
A novel biosensing platform was developed by integrating an aptamer-based DNA biosensor with graphen...
We have investigated the influence exerted by the concentration of graphene oxide (GO) dispersion as...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
Graphene, a single atom thick layer of two-dimensional closely packed honeycomb carbon lattice, and ...
Abstract A simple, signal-off and reusable electrochemical biosensor was developed for sensitive and...
An efficient DNA impedance biosensing platform is constructed, in which positively charged N,N-bis-(...
In this work, we develop a field-effect transistor with a two-dimensional channel made of a single g...
Graphene oxide nanowalls with extremely sharp edges and preferred vertical orientation were deposite...
In this work, we report a low-cost and easy operation biosensor platform capable of detection of var...
Graphene (GN), a two-dimensional and one-atom thick carbon sheet, is showing exciting applications b...
Since the discovery of graphene, and due to its unique properties, we have witnessed a growing inter...
Biosensing is paramount for improving the quality of human life. Biosensors and biosensing protocols...
Aptamers are ssDNA/RNA that can bind to specific targets with high affinity and selectivity. Graphen...
In this work, we proposed a novel simple protocol for preparing 1-aminopyrene/graphene (ApG) hybrids...
There is an emerging interest in developing electrochemical DNA biosensors which rely on label-free ...
A novel biosensing platform was developed by integrating an aptamer-based DNA biosensor with graphen...
We have investigated the influence exerted by the concentration of graphene oxide (GO) dispersion as...
A graphene channel field-effect biosensor is demonstrated for detecting the binding of double-strand...
Graphene, a single atom thick layer of two-dimensional closely packed honeycomb carbon lattice, and ...
Abstract A simple, signal-off and reusable electrochemical biosensor was developed for sensitive and...