WOS: 000418409800082Continuous technology miniaturization using nanoscale materials allows the design of DNA sensing platforms with not only far larger surface areas but alsomore effective characteristics. We herein synthesized benzoic acid-functionalized graphene oxide (GOB), characterized by FT-IR, XPS, Raman Spectroscopy, TGA, SEM, TEM techniques and then it was utilized as a supporting material. Due to the benzoic acid groups available on the surface of GOB, fsDNA was directly immobilized onto the disposable pencil graphite electrode (PGE). The limit of detection (LOD) for fish sperm DNA (fsDNA) concentration was estimated to be 1.11 mu g/mL by using differential pulse voltammetry (DPV) technique. It can be assumed that this simple modi...
Graphene oxide nanowalls with extremely sharp edges and preferred vertical orientation were deposite...
A main challenge for optical graphene-based biosensors detecting nucleic acid is the selection of ke...
DNA is strongly adsorbed on oxidized graphene surfaces in the presence of divalent cations. Here, we...
WOS: 000396946600030PubMed ID: 28214748Recently, the low-cost effective biosensing systems based on ...
The unique structural and electrochemical properties of graphene oxide (GO) make it an ideal materia...
An ultrasensitive DNA biosensor was constructed in this work by using graphene oxide nanosheets (GON...
We have investigated the influence exerted by the concentration of graphene oxide (GO) dispersion as...
We report here a successful multiplex DNA targets biosensor using reduced graphene oxide modified gl...
WOS: 000264089600025Metal oxide nanostructures offer interesting possibilities to design functional ...
Graphene and its derivatives have been a focus of research for a number of years due to their enhanc...
A label-free electrochemical DNA biosensor was developed through the attachment of polystyrene-g-soy...
A novel printed graphene electrode modified with electrochemically reduced graphene oxide was develo...
Carbon black-based hybrid materials have attracted great attention in the design of electrochemical ...
WOS: 000425560800030Graphene oxide (GO) modified disposable pencil graphite electrodes (PGEs) were d...
We report on the synthesis of 2-dimensional transparent graphene flakes (GF; 2.2 mu m x 50 mu m), on...
Graphene oxide nanowalls with extremely sharp edges and preferred vertical orientation were deposite...
A main challenge for optical graphene-based biosensors detecting nucleic acid is the selection of ke...
DNA is strongly adsorbed on oxidized graphene surfaces in the presence of divalent cations. Here, we...
WOS: 000396946600030PubMed ID: 28214748Recently, the low-cost effective biosensing systems based on ...
The unique structural and electrochemical properties of graphene oxide (GO) make it an ideal materia...
An ultrasensitive DNA biosensor was constructed in this work by using graphene oxide nanosheets (GON...
We have investigated the influence exerted by the concentration of graphene oxide (GO) dispersion as...
We report here a successful multiplex DNA targets biosensor using reduced graphene oxide modified gl...
WOS: 000264089600025Metal oxide nanostructures offer interesting possibilities to design functional ...
Graphene and its derivatives have been a focus of research for a number of years due to their enhanc...
A label-free electrochemical DNA biosensor was developed through the attachment of polystyrene-g-soy...
A novel printed graphene electrode modified with electrochemically reduced graphene oxide was develo...
Carbon black-based hybrid materials have attracted great attention in the design of electrochemical ...
WOS: 000425560800030Graphene oxide (GO) modified disposable pencil graphite electrodes (PGEs) were d...
We report on the synthesis of 2-dimensional transparent graphene flakes (GF; 2.2 mu m x 50 mu m), on...
Graphene oxide nanowalls with extremely sharp edges and preferred vertical orientation were deposite...
A main challenge for optical graphene-based biosensors detecting nucleic acid is the selection of ke...
DNA is strongly adsorbed on oxidized graphene surfaces in the presence of divalent cations. Here, we...