Ion sensitive field effect transistors (ISFET) are candidates for a new generation of fully electrical DNA sensors. To this purpose, we have modified ISFET sensors by adsorbing on their Si(3)N(4) surface poly-L-lysine and single (as well as double) stranded DNA. Once coupled to an accurate model of the oppositely charged layers adsorbed on the surface, the proposed sensor allows quantitatively evaluating the adsorbed molecules densities, as well as estimating DNA hybridization kinetics
Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectros...
Fast DNA detection remains of great interest in human genetics, medicine, and drug discovery. The de...
In the last decade the use of field-effect-based devices has become a basic structural element in a ...
Ion sensitive field effect transistors (ISFET) are candidates for a new generation of fully electric...
Microelectronic devices can be fruitfully used for DNA hybridization detection: in this work we show...
The aim of this work was to bio-functionalize the SiO2 gate of ion-sensitive field-effect transistor...
Electronic DNA sensors based on field-effect transistor arrays operating in liquid environment, offe...
The fabrication of ion sensitive field-effect transistor (ISFET) using silicon nitride (Si3N4) as th...
We report a method to measure DNA hybridization potentiometrically in a manner conducive to portable...
A new approach aiming at detecting electronically and in a differential mode DNA hybridization using...
This thesis, after a review on the state-of-the-art sequencing and genotyping technologies, focuses ...
The detection of the intrinsic charge of biochemical molecules is a promising strategy for the fabri...
In recent years there has been great progress in applying FET-type biosensors for highly sensitive b...
[[abstract]]Intensive efforts have been focused on the development of ultrasensitive DNA biosensors ...
Deoxyribonucleic acid (DNA) sequencing technology provides important data for the disclosure of gene...
Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectros...
Fast DNA detection remains of great interest in human genetics, medicine, and drug discovery. The de...
In the last decade the use of field-effect-based devices has become a basic structural element in a ...
Ion sensitive field effect transistors (ISFET) are candidates for a new generation of fully electric...
Microelectronic devices can be fruitfully used for DNA hybridization detection: in this work we show...
The aim of this work was to bio-functionalize the SiO2 gate of ion-sensitive field-effect transistor...
Electronic DNA sensors based on field-effect transistor arrays operating in liquid environment, offe...
The fabrication of ion sensitive field-effect transistor (ISFET) using silicon nitride (Si3N4) as th...
We report a method to measure DNA hybridization potentiometrically in a manner conducive to portable...
A new approach aiming at detecting electronically and in a differential mode DNA hybridization using...
This thesis, after a review on the state-of-the-art sequencing and genotyping technologies, focuses ...
The detection of the intrinsic charge of biochemical molecules is a promising strategy for the fabri...
In recent years there has been great progress in applying FET-type biosensors for highly sensitive b...
[[abstract]]Intensive efforts have been focused on the development of ultrasensitive DNA biosensors ...
Deoxyribonucleic acid (DNA) sequencing technology provides important data for the disclosure of gene...
Recent advances in label free DNA hybridization sensors employing electrochemical impedance spectros...
Fast DNA detection remains of great interest in human genetics, medicine, and drug discovery. The de...
In the last decade the use of field-effect-based devices has become a basic structural element in a ...