The present paper describes a simple and low-cost method for the fabrication of mechanically flexible interdigitated μ-electrodes (FIDμEs) and its application as immunosensor. FIDμEs consist of two coplanar non-passivated interdigitated metallic μ-electrodes supported on a flexible transparent substrate, polyethylene naphthalate (PEN). Bioreagents deposition on PEN substrates becomes possible by depositing SiO2 on the electrodes surface (fingers and inter-digits space). These FIDμEs were successfully applied for the development of a selective conductimetric immunosensor for the quantification of atrazine residues. The immunosensor has been demonstrated for detection of small amounts of atrazine, thanks to the use of immunoreagents specifi...
An impedimetric label-free immunosensor on disposable screen-printed carbon electrodes (SPCE) for qu...
A novel disposable amperometric immunosensor has been developed based on laboratory fabricated scree...
An aflatoxin B1 (AFB1) electrochemical immunosensor was developed by the immobilisation of aflatoxin...
The present paper describes a simple and low-cost method for the fabrication of mechanically flexibl...
This contribution describes the development of an impedimetric immunosensor for atrazine detection. ...
The potential of a conductimetric immunosensor to detect residual amounts of atrazine in a complexv ...
Two novel immunosensors, one impedimetric and other one conductimetric, for atrazine detection in re...
This work presents the realization of a label-free electrochemical immunosensor for the quick, cheap...
9 pages, 5 figures.-- PMID: 17085033 [PubMed].Available online on Nov 7, 2006.A novel and very sensi...
A direct competitive immunosensor for the electrochemical determination of Imidacloprid (IMD) pestic...
This work describes the development of an electrochemical immunosensor for the analysis of atrazine ...
This work reports the assembly of thin films of a silica (SiO2)-modified copper metal organic framew...
A new voltammetric competitive immunosensor selective for atrazine, based on the immobilization of a...
[eng] This thesis has been developed in the framework of the European FoodSmartphone project with th...
Polychlorinated biphenyls (PCBs) are a highly toxic family of synthetic chemical compounds. PCBs are...
An impedimetric label-free immunosensor on disposable screen-printed carbon electrodes (SPCE) for qu...
A novel disposable amperometric immunosensor has been developed based on laboratory fabricated scree...
An aflatoxin B1 (AFB1) electrochemical immunosensor was developed by the immobilisation of aflatoxin...
The present paper describes a simple and low-cost method for the fabrication of mechanically flexibl...
This contribution describes the development of an impedimetric immunosensor for atrazine detection. ...
The potential of a conductimetric immunosensor to detect residual amounts of atrazine in a complexv ...
Two novel immunosensors, one impedimetric and other one conductimetric, for atrazine detection in re...
This work presents the realization of a label-free electrochemical immunosensor for the quick, cheap...
9 pages, 5 figures.-- PMID: 17085033 [PubMed].Available online on Nov 7, 2006.A novel and very sensi...
A direct competitive immunosensor for the electrochemical determination of Imidacloprid (IMD) pestic...
This work describes the development of an electrochemical immunosensor for the analysis of atrazine ...
This work reports the assembly of thin films of a silica (SiO2)-modified copper metal organic framew...
A new voltammetric competitive immunosensor selective for atrazine, based on the immobilization of a...
[eng] This thesis has been developed in the framework of the European FoodSmartphone project with th...
Polychlorinated biphenyls (PCBs) are a highly toxic family of synthetic chemical compounds. PCBs are...
An impedimetric label-free immunosensor on disposable screen-printed carbon electrodes (SPCE) for qu...
A novel disposable amperometric immunosensor has been developed based on laboratory fabricated scree...
An aflatoxin B1 (AFB1) electrochemical immunosensor was developed by the immobilisation of aflatoxin...