Copper (I) oxide (Cu2O) is an appealing semiconducting oxide with potential applications in various fields ranging from photovoltaics to biosensing. The precise control of size and shape of Cu2O nanostructures has been an area of intense research. Here, the electrodeposition of Cu2O nanoparticles is presented with precise size variations by utilizing ethylenediamine (EDA) as a size controlling agent. The size of the Cu2O nanoparticles was successfully varied between 54.09 nm to 966.97 nm by changing the concentration of EDA in the electrolytic bath during electrodeposition. The large surface area of the Cu2O nanoparticles present an attractive platform for immobilizing glucose oxidase for glucose biosensing. The fabricated enzymatic biosens...
The production of a nanomaterial with enhanced and desirable electrocatalytic properties is of prime...
A Cu2O/Cu electrode was fabricated by applying an anodic voltage to the Cu electrode in a mixed alco...
Copper oxide (CuO)-decorated cerium oxide (CeO2) nanoparticles were synthesized and used to detect g...
The glucose sensitivity achieved with copper(II) oxide particles with three different morphologies (...
An enzymeless biosensor based on Cu(x)O/Cu electrode was investigated in this study. The XRD analysi...
Identifying a non-enzymatic sensor electrocatalyst for the accurate determination of biomolecules is...
In this work we investigated the surface and facet-dependent catalytic properties of metal oxide par...
The glucose concentration in human blood can have a worrisome impact on human health, so the distrib...
Highly stable CuO nanoparticles about 2-4 nm in diameter have been successfully prepared by heating ...
A direct electrocatalytic activity of glucose oxidation on cuprous oxide modified glassy carbon elec...
Cu nanostructures with different shapes were synthesized via a simple reduction approach from CuO na...
Summary: Constructing high-performance enzyme-free biosensors for detecting glucose is essential to ...
Glucose sensors are widely applied in society as an effective way to diagnose and control diabetes b...
Here we report Cu/Cu2O nanocomposites prepared via potential oscillation. High resolution transmissi...
An enzymeless biosensor based on CuxO/Cu electrode was investigated in this study. The XRD analysis ...
The production of a nanomaterial with enhanced and desirable electrocatalytic properties is of prime...
A Cu2O/Cu electrode was fabricated by applying an anodic voltage to the Cu electrode in a mixed alco...
Copper oxide (CuO)-decorated cerium oxide (CeO2) nanoparticles were synthesized and used to detect g...
The glucose sensitivity achieved with copper(II) oxide particles with three different morphologies (...
An enzymeless biosensor based on Cu(x)O/Cu electrode was investigated in this study. The XRD analysi...
Identifying a non-enzymatic sensor electrocatalyst for the accurate determination of biomolecules is...
In this work we investigated the surface and facet-dependent catalytic properties of metal oxide par...
The glucose concentration in human blood can have a worrisome impact on human health, so the distrib...
Highly stable CuO nanoparticles about 2-4 nm in diameter have been successfully prepared by heating ...
A direct electrocatalytic activity of glucose oxidation on cuprous oxide modified glassy carbon elec...
Cu nanostructures with different shapes were synthesized via a simple reduction approach from CuO na...
Summary: Constructing high-performance enzyme-free biosensors for detecting glucose is essential to ...
Glucose sensors are widely applied in society as an effective way to diagnose and control diabetes b...
Here we report Cu/Cu2O nanocomposites prepared via potential oscillation. High resolution transmissi...
An enzymeless biosensor based on CuxO/Cu electrode was investigated in this study. The XRD analysis ...
The production of a nanomaterial with enhanced and desirable electrocatalytic properties is of prime...
A Cu2O/Cu electrode was fabricated by applying an anodic voltage to the Cu electrode in a mixed alco...
Copper oxide (CuO)-decorated cerium oxide (CeO2) nanoparticles were synthesized and used to detect g...