A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO) nanowires by a green method using saponin-rich Sapindus mukorossi fruit extract (SMFE). The physio-chemical characteristics of the synthesized CuO nanowires have been characterized by X-ray Diffractometry (XRD), X-ray Photoelectron Spectroscopy (XPS), FT-IR (Fourier Transform Infrared Spectroscopy, FE-SEM (Scanning Electron Microscopy), and High-Resolution Transmission Electron Microscopy (HR-TEM). Further, the electrocatalytic activity of the CuO nanowires synthesized with SMFE has been investigated, and they have been used as dopamine (DA) sensors. Because of their unique properties, the CuO nanowires/GCE exhibited remarkable electrochemic...
This work reports a highly sensitive electrochemical sensor for organophosphate pesticide (malathion...
PubMed ID: 20006114Cu nanoparticles have been electrochemically incorporated polypyrrole film that w...
The production of a nanomaterial with enhanced and desirable electrocatalytic properties is of prime...
A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO)...
We have successfully studied the charge transfer kinetics between carbon paste electrodes and dopami...
Dopamine plays an essential role in the proper functioning of the brain and the body. A change in th...
Cu2O-reduced graphene oxide nanocomposite (Cu2O-RGO) was used to modify glassy carbon electrodes (GC...
Dopamine is a chemical that plays a key role in various neurological diseases such as Parkinson's, d...
In this paper, we demonstrate and compare the synthesis of copper (Cu) and copper(I) oxide on Cu (Cu...
A simple binary copper selenide, CuSe nanostructure, has been investigated as electrochemical sensor...
Exploring rapid, highly sensitive, cost-effective assay platforms to diagnose neurotransmitters is c...
Morphologically tunable copper oxide-based nanomaterials on Cu wire have been synthesized through a ...
In the current study, copper oxide nanoparticles (CuO NPs) were synthesized using chia seed extract ...
Chemiresistor dopamine sensor based on ultrathin gold nanowiresIrina Muratovaa, Yulia G. Mourzinab A...
A direct electrocatalytic activity of glucose oxidation on cuprous oxide modified glassy carbon elec...
This work reports a highly sensitive electrochemical sensor for organophosphate pesticide (malathion...
PubMed ID: 20006114Cu nanoparticles have been electrochemically incorporated polypyrrole film that w...
The production of a nanomaterial with enhanced and desirable electrocatalytic properties is of prime...
A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO)...
We have successfully studied the charge transfer kinetics between carbon paste electrodes and dopami...
Dopamine plays an essential role in the proper functioning of the brain and the body. A change in th...
Cu2O-reduced graphene oxide nanocomposite (Cu2O-RGO) was used to modify glassy carbon electrodes (GC...
Dopamine is a chemical that plays a key role in various neurological diseases such as Parkinson's, d...
In this paper, we demonstrate and compare the synthesis of copper (Cu) and copper(I) oxide on Cu (Cu...
A simple binary copper selenide, CuSe nanostructure, has been investigated as electrochemical sensor...
Exploring rapid, highly sensitive, cost-effective assay platforms to diagnose neurotransmitters is c...
Morphologically tunable copper oxide-based nanomaterials on Cu wire have been synthesized through a ...
In the current study, copper oxide nanoparticles (CuO NPs) were synthesized using chia seed extract ...
Chemiresistor dopamine sensor based on ultrathin gold nanowiresIrina Muratovaa, Yulia G. Mourzinab A...
A direct electrocatalytic activity of glucose oxidation on cuprous oxide modified glassy carbon elec...
This work reports a highly sensitive electrochemical sensor for organophosphate pesticide (malathion...
PubMed ID: 20006114Cu nanoparticles have been electrochemically incorporated polypyrrole film that w...
The production of a nanomaterial with enhanced and desirable electrocatalytic properties is of prime...