Neural microelectrodes were coated with poly(3,4-ethylenedioxythiophene) (PEDOT) and polypyrrole (PPy), using electropolymerization. By electrochemical characterization, it could be shown that the coating led to a significant reduction of the electrode impedance, along with an increase of the charge storage capacity. Electropolymerization was performed under various galvanostatic and potentiostatic conditions, in order to find the optimum parameters. For PEDOT, it was found that the best coatings were obtained for a current density of 1 mA/cm2 or a potential of 0,9 V vs. Ag/AgCl, respectively. The optimum parameters for electropolymerization of PPy were found to be 1 mA/cm2 or 0,7 V vs. Ag/AgCl, respectively. Using optical profilometry, the...
Conductive polymers are of great interest in the field of neural electrodes because of their potenti...
Objective. Neural recording electrodes suffer from poor signal to noise ratio, charge density, biost...
Conductive polymers are of great interest in the field of neural electrodes because of their potenti...
Conducting polymers have been widely explored as coating materials for metal electrodes to improve n...
Conducting polymers have been widely explored as coating materials for metal electrodes to improve n...
Conducting polymers have been widely explored as coating materials for metal electrodes to improve n...
none9siConducting polymers have been widely explored as coating materials for metal electrodes to im...
Micromachined neural prosthetic devices facilitate the functional stimulation of and recording from ...
Micromachined neural prosthetic devices facilitate the functional stimulation of and recording from ...
A key limitation associated with conducting polymers (CP) for implantable electrodeapplications is t...
Polypyrrole (PPy) and poly(3,4-ethylenedioxythiophene) (PEDOT) conducting polymers are being applied...
Surface modification of neural prosthetic electrodes with polymeric materials, in particular, conduc...
Conducting polymers have been extensively reported as promising coating materials for applications ...
This research investigates the use of conducting polymer coatings on platinum (Pt) electrodes for us...
Conductive polymers are of great interest in the field of neural electrodes because of their potenti...
Conductive polymers are of great interest in the field of neural electrodes because of their potenti...
Objective. Neural recording electrodes suffer from poor signal to noise ratio, charge density, biost...
Conductive polymers are of great interest in the field of neural electrodes because of their potenti...
Conducting polymers have been widely explored as coating materials for metal electrodes to improve n...
Conducting polymers have been widely explored as coating materials for metal electrodes to improve n...
Conducting polymers have been widely explored as coating materials for metal electrodes to improve n...
none9siConducting polymers have been widely explored as coating materials for metal electrodes to im...
Micromachined neural prosthetic devices facilitate the functional stimulation of and recording from ...
Micromachined neural prosthetic devices facilitate the functional stimulation of and recording from ...
A key limitation associated with conducting polymers (CP) for implantable electrodeapplications is t...
Polypyrrole (PPy) and poly(3,4-ethylenedioxythiophene) (PEDOT) conducting polymers are being applied...
Surface modification of neural prosthetic electrodes with polymeric materials, in particular, conduc...
Conducting polymers have been extensively reported as promising coating materials for applications ...
This research investigates the use of conducting polymer coatings on platinum (Pt) electrodes for us...
Conductive polymers are of great interest in the field of neural electrodes because of their potenti...
Conductive polymers are of great interest in the field of neural electrodes because of their potenti...
Objective. Neural recording electrodes suffer from poor signal to noise ratio, charge density, biost...
Conductive polymers are of great interest in the field of neural electrodes because of their potenti...