Approximately 3 million people around the world suffer from diabetes. One of the basic indications of an individual suffering from diabetes can be observed in the form of peaked levels of glucose in the blood. Thus, it is imperative for a non-invasive mechanism to be derived through which glucose levels in the blood can be detected throughout a regular time frame. The aim of this project focuses on synthesis of a nanocomposite which can be used to detect glucose levels in the blood in a non-invasive manner. The selected nanocomposite was made from a mixture of CuO and MgO. Once synthesized, it was subjected to a series of tests and scans. The results demonstrated effective and efficient glucose detection activity of the CuO-MgO nanocomposit...
The measurement of blood glucose levels is essential for diagnosing and managing diabetes. Enzymatic...
CuO nanoparticles (NPs) based graphene oxide (CuO/GO) composites with different CuO NPs loading amou...
Here we report Cu/Cu2O nanocomposites prepared via potential oscillation. High resolution transmissi...
Highly stable CuO nanoparticles about 2-4 nm in diameter have been successfully prepared by heating ...
The glucose concentration in human blood can have a worrisome impact on human health, so the distrib...
In this study, a nano Ag-CuO/rGO (reduced graphene oxide) composite was designed and constructed as ...
Perturbations in glucose homeostasis is critical for human health, as hyperglycemia (defining diabet...
© 2014, Springer-Verlag Berlin Heidelberg. An electrochemical non-enzymatic glucose sensor was fabri...
In this study, we have developed a sensitive and selective glucose sensor using novel CuO nanosheets...
A multi-gram preparation of graphene nanoplatelets decorated with CuO leaf-like structures and Cu2O ...
Here, we report a nonenzymatic amperometric glucose sensor based on copper oxide (CuO) nanocubes-gra...
The effect of CuO-NiO nanocomposite was studied by addition of various concentrations of acetone. Hi...
We reported a single-use non-enzymatic glucose biosensor based on a printed CuO nanoparticles film o...
© The Royal Society of Chemistry.Glucose sensors have been extensively developed because of their br...
A non-invasive method for detecting glucose is pursued by millions of diabetic patients to improve t...
The measurement of blood glucose levels is essential for diagnosing and managing diabetes. Enzymatic...
CuO nanoparticles (NPs) based graphene oxide (CuO/GO) composites with different CuO NPs loading amou...
Here we report Cu/Cu2O nanocomposites prepared via potential oscillation. High resolution transmissi...
Highly stable CuO nanoparticles about 2-4 nm in diameter have been successfully prepared by heating ...
The glucose concentration in human blood can have a worrisome impact on human health, so the distrib...
In this study, a nano Ag-CuO/rGO (reduced graphene oxide) composite was designed and constructed as ...
Perturbations in glucose homeostasis is critical for human health, as hyperglycemia (defining diabet...
© 2014, Springer-Verlag Berlin Heidelberg. An electrochemical non-enzymatic glucose sensor was fabri...
In this study, we have developed a sensitive and selective glucose sensor using novel CuO nanosheets...
A multi-gram preparation of graphene nanoplatelets decorated with CuO leaf-like structures and Cu2O ...
Here, we report a nonenzymatic amperometric glucose sensor based on copper oxide (CuO) nanocubes-gra...
The effect of CuO-NiO nanocomposite was studied by addition of various concentrations of acetone. Hi...
We reported a single-use non-enzymatic glucose biosensor based on a printed CuO nanoparticles film o...
© The Royal Society of Chemistry.Glucose sensors have been extensively developed because of their br...
A non-invasive method for detecting glucose is pursued by millions of diabetic patients to improve t...
The measurement of blood glucose levels is essential for diagnosing and managing diabetes. Enzymatic...
CuO nanoparticles (NPs) based graphene oxide (CuO/GO) composites with different CuO NPs loading amou...
Here we report Cu/Cu2O nanocomposites prepared via potential oscillation. High resolution transmissi...