The rapidly developing field of conducting polymers in organic electronics has many implications for bioelectronics. For biosensing applications, tailoring the functionalities of the conducting polymers surface is an efficient approach to improve both sensitivity and selectivity. Here, we demonstrated a facile and economic approach for the fabrication of a high-density, negatively charged carboxylic-acid-group-functionalized PEDOT (PEDOT:COOH) using an inexpensive ternary carboxylic acid, citrate, as a dopant. The polymerization efficiency was significantly improved by the addition of LiClO4 as a supporting electrolyte yielding a dense PEDOT:COOH sensing interface. The resulting PEDOT:COOH interface had a high surface density of carboxylic ...
International audienceThe development of low-cost biosensors that enable a sensitive, selective and ...
Molecularly imprinted polymeric films were prepared on the surface of a gold electrode by reductive ...
The human brain is an extraordinarily complex organ. The process of neurotransmission gives rise to ...
The rapidly developing field of conducting polymers in organic electronics has many implications for...
Poly(N-methylpyrrole) (PNMPy), poly(N-cyanoethylpyrrole) (PNCPy) and poly(3,4-ethylenedioxythiophene...
An all PEDOT:PSS Organic Electrochemical Transistor (OECT) has been developed and used for the sele...
Because of their low operation voltage, high transconductance, and good aqueous compatibility, organ...
In this research, we aimed to evaluate the impact of the surface charges and morphologies of electro...
Conducting polymers that possess good electrochemical properties, nanostructured morphology and func...
With the aim of a reliable biosensing exhibiting enhanced sensitivity and selectivity, this study de...
Detection of dopamine (DA) in the presence of excess of ascorbic acid (AA) has been demonstrated u...
In this dissertation, several new tools for making neurochemical measurements are presented. All of ...
With this study, we describe a method for electropolymerizing a PEDOT:Perchlorate polymer onto the s...
This Ph.D. Thesis concerns the design and characterisation of functional electrochemical interfaces ...
Electrodes based on the combination of three-layered films formed by two different conducting polyme...
International audienceThe development of low-cost biosensors that enable a sensitive, selective and ...
Molecularly imprinted polymeric films were prepared on the surface of a gold electrode by reductive ...
The human brain is an extraordinarily complex organ. The process of neurotransmission gives rise to ...
The rapidly developing field of conducting polymers in organic electronics has many implications for...
Poly(N-methylpyrrole) (PNMPy), poly(N-cyanoethylpyrrole) (PNCPy) and poly(3,4-ethylenedioxythiophene...
An all PEDOT:PSS Organic Electrochemical Transistor (OECT) has been developed and used for the sele...
Because of their low operation voltage, high transconductance, and good aqueous compatibility, organ...
In this research, we aimed to evaluate the impact of the surface charges and morphologies of electro...
Conducting polymers that possess good electrochemical properties, nanostructured morphology and func...
With the aim of a reliable biosensing exhibiting enhanced sensitivity and selectivity, this study de...
Detection of dopamine (DA) in the presence of excess of ascorbic acid (AA) has been demonstrated u...
In this dissertation, several new tools for making neurochemical measurements are presented. All of ...
With this study, we describe a method for electropolymerizing a PEDOT:Perchlorate polymer onto the s...
This Ph.D. Thesis concerns the design and characterisation of functional electrochemical interfaces ...
Electrodes based on the combination of three-layered films formed by two different conducting polyme...
International audienceThe development of low-cost biosensors that enable a sensitive, selective and ...
Molecularly imprinted polymeric films were prepared on the surface of a gold electrode by reductive ...
The human brain is an extraordinarily complex organ. The process of neurotransmission gives rise to ...