A simple binary copper selenide, CuSe nanostructure, has been investigated as electrochemical sensor for dopamine detection. The hydrothermally synthesized and electrodeposited CuSe nanostructures showed high sensitivity for dopamine detection with low limit of detection (LOD). A sensitivity of 26 μA/μM.cm2 was obtained with this electrochemical sensor which is ideal to detect even small fluctuations in the transient dopamine concentration. Apart from high sensitivity and low LOD, the dopamine oxidation on the catalyst surface also occurred at a low applied potential (\u3c 0.18 V vs Ag|AgCl), thereby significantly increasing selectivity of the process specifically with respect to ascorbic and uric acids, which are considered to be the most ...
We previously succeeded to prepare stable mesoporous Cu films on Au-coated conductive working electr...
A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO)...
A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO)...
Cu2Se, synthesized through one-pot hydrothermal synthesis, was identified as highly efficient bifunc...
Dopamine plays an essential role in the proper functioning of the brain and the body. A change in th...
Dopamine is a chemical that plays a key role in various neurological diseases such as Parkinson's, d...
Square-wave voltammetric detection of dopamine was studied at a copper (Cu)-(3-mercaptopropyl) trime...
A how injection analysis (FIA) system using a tubular electrode based on the redox properties of cop...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
PubMed ID: 20006114Cu nanoparticles have been electrochemically incorporated polypyrrole film that w...
This research applied a nanostructured electrochemical sensor with a screen-printed electrode (SPE) ...
This research applied a nanostructured electrochemical sensor with a screen-printed electrode (SPE) ...
Dopamine is a key molecule in neurotransmission, that is produced in the substantia nigra, ventral t...
Cu2O-reduced graphene oxide nanocomposite (Cu2O-RGO) was used to modify glassy carbon electrodes (GC...
Dopamine is an important neurotransmitter involved in many human biological processes as well as in ...
We previously succeeded to prepare stable mesoporous Cu films on Au-coated conductive working electr...
A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO)...
A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO)...
Cu2Se, synthesized through one-pot hydrothermal synthesis, was identified as highly efficient bifunc...
Dopamine plays an essential role in the proper functioning of the brain and the body. A change in th...
Dopamine is a chemical that plays a key role in various neurological diseases such as Parkinson's, d...
Square-wave voltammetric detection of dopamine was studied at a copper (Cu)-(3-mercaptopropyl) trime...
A how injection analysis (FIA) system using a tubular electrode based on the redox properties of cop...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
PubMed ID: 20006114Cu nanoparticles have been electrochemically incorporated polypyrrole film that w...
This research applied a nanostructured electrochemical sensor with a screen-printed electrode (SPE) ...
This research applied a nanostructured electrochemical sensor with a screen-printed electrode (SPE) ...
Dopamine is a key molecule in neurotransmission, that is produced in the substantia nigra, ventral t...
Cu2O-reduced graphene oxide nanocomposite (Cu2O-RGO) was used to modify glassy carbon electrodes (GC...
Dopamine is an important neurotransmitter involved in many human biological processes as well as in ...
We previously succeeded to prepare stable mesoporous Cu films on Au-coated conductive working electr...
A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO)...
A facile one-step, eco-friendly, and cost-effective approach for the formation of copper oxide (CuO)...