Copper nanoparticles with the diameter of 50 ± 20 nm decorated nitrogen doped graphite oxide (NGO) have been prepared through a simple single step carbonization method using copper metal-organic framework (MOF), [Cu2(BDC)2(DABCO)] (where BDC is 1,4-benzenedicarboxylate, and DABCO is 1,4-Diazabicyclo[2.2.2]octane) as precursor. The surface morphology, porosity, surface area and elemental composition of CuNPs/NGO were characterized by various techniques. The as-synthesized CuNPs/NGO nanomaterials were coated on commercially available disposable screen-printed carbon electrode for the sensitive determination of glucose. We find that the modified electrode can detect glucose between 1 μM and 1803 μM (linear range) with good sensiti...
Low-cost enzyme-free glucose sensors with partial flexibility adaptable for wearable Internet of Thi...
Highly stable CuO nanoparticles about 2-4 nm in diameter have been successfully prepared by heating ...
Copper (I) oxide (Cu2O) is an appealing semiconducting oxide with potential applications in various ...
Summary: Constructing high-performance enzyme-free biosensors for detecting glucose is essential to ...
A multi-gram preparation of graphene nanoplatelets decorated with CuO leaf-like structures and Cu2O ...
The orchestrated network of octahedron shaped Cu organic framework is developed via a simple aging p...
AbstractA nonenzymatic glucose sensor based on a disposable pencil graphite electrode (PGE) modified...
© 2014, Springer-Verlag Berlin Heidelberg. An electrochemical non-enzymatic glucose sensor was fabri...
Perturbations in glucose homeostasis is critical for human health, as hyperglycemia (defining diabet...
1-D nanostructures are promising materials for development of electrochemical devices offering benef...
Glucose determination is an essential procedure in different fields, used in clinical analysis for t...
Here, we report a nonenzymatic amperometric glucose sensor based on copper oxide (CuO) nanocubes-gra...
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...
Abstract Bimetal catalysts are good alternatives for non-enzymatic glucose sensors owing to their lo...
Low-cost enzyme-free glucose sensors with partial flexibility adaptable for wearable Internet of Thi...
Highly stable CuO nanoparticles about 2-4 nm in diameter have been successfully prepared by heating ...
Copper (I) oxide (Cu2O) is an appealing semiconducting oxide with potential applications in various ...
Summary: Constructing high-performance enzyme-free biosensors for detecting glucose is essential to ...
A multi-gram preparation of graphene nanoplatelets decorated with CuO leaf-like structures and Cu2O ...
The orchestrated network of octahedron shaped Cu organic framework is developed via a simple aging p...
AbstractA nonenzymatic glucose sensor based on a disposable pencil graphite electrode (PGE) modified...
© 2014, Springer-Verlag Berlin Heidelberg. An electrochemical non-enzymatic glucose sensor was fabri...
Perturbations in glucose homeostasis is critical for human health, as hyperglycemia (defining diabet...
1-D nanostructures are promising materials for development of electrochemical devices offering benef...
Glucose determination is an essential procedure in different fields, used in clinical analysis for t...
Here, we report a nonenzymatic amperometric glucose sensor based on copper oxide (CuO) nanocubes-gra...
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...
Abstract Bimetal catalysts are good alternatives for non-enzymatic glucose sensors owing to their lo...
Low-cost enzyme-free glucose sensors with partial flexibility adaptable for wearable Internet of Thi...
Highly stable CuO nanoparticles about 2-4 nm in diameter have been successfully prepared by heating ...
Copper (I) oxide (Cu2O) is an appealing semiconducting oxide with potential applications in various ...