Polyhistidine chemically modified electrode is shown to greatly improve the voltammetric waves and increase the current response of phenolic compounds (such as dopamine (DA), epinephrine (E) and catechol (CC)) for their cation-selective quality. When used as amperometric detector, the detection limits are 6 X 10^-9 mol/L for DA, 8 X 10^-9 mol/L for E and 2 X 10^-8 mol/L for CC. The modified electrode has also been used as electrochemical detector for capillary electrophoresis (CE) and the phenolic compounds were successfully separated and detected with high resolution. The electrode has a good stability; 80% of the original response was obtained after being used in CE for one month
Analyzing microdialysates sampled from the brain area of interest using HPLC is the most popular met...
The studies have been focused on to improve the separation of catecholamines with capillary electrop...
Numerous disinfection products are widely used in daily life to kill pathogenic microorganisms. Howe...
This paper reports on the advantages of combining the separation capability of capillary electrophor...
The construction of amperometric enzymeless biosensors for phenolic compounds determination, using c...
Copyright © 2013 Jadwiga Sołoducho, Joanna Cabaj. This is an open access article distributed under t...
Electrochemical detection behavior of phenolic compounds in a series dual-electrode detector constru...
A conducting polypyrrole film immobilized with PMo12O403- anion on a glassy carbon electrode was pre...
A carbon paste electrode (CPE) modified with poly (tannic acid) was used for the sensitive voltammet...
An end-channel amperometric detector with a guide tube for working electrode was designed and integr...
WOS: 000409010600018A new electrochemical microbial biosensor system based on Candida tropicalis was...
Capillary electrophoresis was coupled successfully and reliably to potentiometric sensors, which are...
Electrochemical oxidation of phenolic compounds leads to a deposition of polymeric films on the surf...
Electroanalytical chemistry has been widely applied to the study of neurochemical systems. This feas...
Electrochemical detection of five species of aromatic amines at a carbon fiber microdisk electrode a...
Analyzing microdialysates sampled from the brain area of interest using HPLC is the most popular met...
The studies have been focused on to improve the separation of catecholamines with capillary electrop...
Numerous disinfection products are widely used in daily life to kill pathogenic microorganisms. Howe...
This paper reports on the advantages of combining the separation capability of capillary electrophor...
The construction of amperometric enzymeless biosensors for phenolic compounds determination, using c...
Copyright © 2013 Jadwiga Sołoducho, Joanna Cabaj. This is an open access article distributed under t...
Electrochemical detection behavior of phenolic compounds in a series dual-electrode detector constru...
A conducting polypyrrole film immobilized with PMo12O403- anion on a glassy carbon electrode was pre...
A carbon paste electrode (CPE) modified with poly (tannic acid) was used for the sensitive voltammet...
An end-channel amperometric detector with a guide tube for working electrode was designed and integr...
WOS: 000409010600018A new electrochemical microbial biosensor system based on Candida tropicalis was...
Capillary electrophoresis was coupled successfully and reliably to potentiometric sensors, which are...
Electrochemical oxidation of phenolic compounds leads to a deposition of polymeric films on the surf...
Electroanalytical chemistry has been widely applied to the study of neurochemical systems. This feas...
Electrochemical detection of five species of aromatic amines at a carbon fiber microdisk electrode a...
Analyzing microdialysates sampled from the brain area of interest using HPLC is the most popular met...
The studies have been focused on to improve the separation of catecholamines with capillary electrop...
Numerous disinfection products are widely used in daily life to kill pathogenic microorganisms. Howe...