Electrochemical biosensors have shown great potential in the medical diagnosis field. The performance of electrochemical biosensors depends on the sensing materials used. ZnO nanostructures play important roles as the active sites where biological events occur, subsequently defining the sensitivity and stability of the device. ZnO nanostructures have been synthesized into four different dimensional formations, which are zero dimensional (nanoparticles and quantum dots), one dimensional (nanorods, nanotubes, nanofibers, and nanowires), two dimensional (nanosheets, nanoflakes, nanodiscs, and nanowalls) and three dimensional (hollow spheres and nanoflowers). The zero-dimensional nanostructures could be utilized for creating more active sites w...
AbstractNanostructures have been very popular for several years to do research on sensing. In this p...
Zinc oxide is a unique n-type semiconducting material, owing to wide bandgap of ~3.37 eV, non-toxic,...
An amperometric glucose biosensor based on the direct electron transfer (DET) of glucose oxidase (GO...
Morphology effect is one of the essential factors that influence the performance of electrochemical ...
Nanostructured metal oxides, such as zinc oxide (ZnO), are considered as excellent materials for the...
Recent advancement in nanoscience and nanotechnology has witnessed numerous triumphs of zinc oxide (...
The ability to detect biomarkers at a molecular level is crucial to ensure high survival rates for p...
The semi-conductor zinc oxide (ZnO), a representative of group II-VI has gained substantial interest...
ZnO nanostructures are promising candidates for use in sensors, especially in electrochemical sensor...
Abstract Advancing as a biosensing nanotechnology, nanohybrids present a new class of functional mat...
Advances in the miniaturization and portability of the chemical sensing devices have always been hin...
We report on the fabrication of electrical biosensors based on functionalized ZnO nanorod surfaces w...
Recently ZnO has attracted much interest because of its usefulness for intracellular measurements of...
Nanostructures have been very popular for several years to do research on sensing. In this paper we ...
The aim of this work was to investigate the influence of morphology on its electrochemical propertie...
AbstractNanostructures have been very popular for several years to do research on sensing. In this p...
Zinc oxide is a unique n-type semiconducting material, owing to wide bandgap of ~3.37 eV, non-toxic,...
An amperometric glucose biosensor based on the direct electron transfer (DET) of glucose oxidase (GO...
Morphology effect is one of the essential factors that influence the performance of electrochemical ...
Nanostructured metal oxides, such as zinc oxide (ZnO), are considered as excellent materials for the...
Recent advancement in nanoscience and nanotechnology has witnessed numerous triumphs of zinc oxide (...
The ability to detect biomarkers at a molecular level is crucial to ensure high survival rates for p...
The semi-conductor zinc oxide (ZnO), a representative of group II-VI has gained substantial interest...
ZnO nanostructures are promising candidates for use in sensors, especially in electrochemical sensor...
Abstract Advancing as a biosensing nanotechnology, nanohybrids present a new class of functional mat...
Advances in the miniaturization and portability of the chemical sensing devices have always been hin...
We report on the fabrication of electrical biosensors based on functionalized ZnO nanorod surfaces w...
Recently ZnO has attracted much interest because of its usefulness for intracellular measurements of...
Nanostructures have been very popular for several years to do research on sensing. In this paper we ...
The aim of this work was to investigate the influence of morphology on its electrochemical propertie...
AbstractNanostructures have been very popular for several years to do research on sensing. In this p...
Zinc oxide is a unique n-type semiconducting material, owing to wide bandgap of ~3.37 eV, non-toxic,...
An amperometric glucose biosensor based on the direct electron transfer (DET) of glucose oxidase (GO...