We report a dopamine electrochemical sensor based on the modification of glassy carbon electrodes (GCE) with polylysine‐functionalized single‐wall carbon nanotubes (SWCNT‐PLys). The resulting electrodes (GCE/SWCNT‐PLys) showed a significant improvement in the electrooxidation of dopamine with drastic decrease in the peak potentials separation and important enhancement in the associated currents. Dopamine was detected by differential pulse voltammetry‐adsorptive stripping with medium exchange at nanomolar levels even in the presence of high excess of ascorbic and uric acids. The sensor was successfully used for the quantification of dopamine in urine samples enriched with the neurotransmitter.Fil: Gutierrez, Alejandro. Consejo Nacional de In...
Understanding how the brain works requires developing advanced tools that allow measurement of bioel...
In this paper nitrogen-doped graphene (NG) nanosheets were used as the modifier on the surface of gl...
The catalytic oxidation of dopamine (DA) at a LiTCNE (lithium tetracyanoethylenide) film modified el...
We report a dopamine electrochemical sensor based on the modification of glassy carbon electrodes (G...
This work reports on the performance of carbon nanotube modified screen-printed electrodes (SPE-MWCN...
This work describes the advantages of carbon nanotubes paste electrodes (CNTPE) modified with a mela...
We report the characterization of a dispersion of multi-wall carbon nanotubes (CNT) in a solution of...
We selectively detected dopamine using poly-glutamic acid patterned single-walled carbon nanotube (P...
This work reports the application of glassy carbon electrodes (GCE) modified with bamboo-like carbon...
Most of the current techniques for in vivo detection of dopamine exploit the ease of oxidation of th...
The main goal of this study was to design and develop novel carbon nanotube (CNT) based platforms as...
A one‐step electrode surface modification is proposed in which a disposable, screen‐printed carbon e...
This work reports the synthesis of single-wall carbon nanotubes (SWCNT) covalently functionalized wi...
Dopamine is a key molecule in neurotransmission, that is produced in the substantia nigra, ventral t...
We report the highly selective and sensitive voltammetric dopamine quantification in the presence of...
Understanding how the brain works requires developing advanced tools that allow measurement of bioel...
In this paper nitrogen-doped graphene (NG) nanosheets were used as the modifier on the surface of gl...
The catalytic oxidation of dopamine (DA) at a LiTCNE (lithium tetracyanoethylenide) film modified el...
We report a dopamine electrochemical sensor based on the modification of glassy carbon electrodes (G...
This work reports on the performance of carbon nanotube modified screen-printed electrodes (SPE-MWCN...
This work describes the advantages of carbon nanotubes paste electrodes (CNTPE) modified with a mela...
We report the characterization of a dispersion of multi-wall carbon nanotubes (CNT) in a solution of...
We selectively detected dopamine using poly-glutamic acid patterned single-walled carbon nanotube (P...
This work reports the application of glassy carbon electrodes (GCE) modified with bamboo-like carbon...
Most of the current techniques for in vivo detection of dopamine exploit the ease of oxidation of th...
The main goal of this study was to design and develop novel carbon nanotube (CNT) based platforms as...
A one‐step electrode surface modification is proposed in which a disposable, screen‐printed carbon e...
This work reports the synthesis of single-wall carbon nanotubes (SWCNT) covalently functionalized wi...
Dopamine is a key molecule in neurotransmission, that is produced in the substantia nigra, ventral t...
We report the highly selective and sensitive voltammetric dopamine quantification in the presence of...
Understanding how the brain works requires developing advanced tools that allow measurement of bioel...
In this paper nitrogen-doped graphene (NG) nanosheets were used as the modifier on the surface of gl...
The catalytic oxidation of dopamine (DA) at a LiTCNE (lithium tetracyanoethylenide) film modified el...