An integrated field-effect device for fully electronic deoxyribonucleic acid (DNA) detection was realized in a standard CMOS process. The device is composed of a floating-gate MOS transistor, a control-capacitor acting as integrated counterelectrode, and an exposed active area for DNA immobilization. The drain-current of the transistor is modulated by the electric charge carried by the DNA molecules. After DNA hybridization, this charge increases and a change in the output current is measured. Experimental results are provided. Full compatibility with a standard CMOS process opens the way to the realization of low-cost large-scale integration of fast electronic DNA detectors
An 8×16 array of sensing micro-sites employs a fully-electrical label-free technique for DNA recogni...
In this paper, the electronic transduction of DNA hybridization is presented by coupling organic cha...
This paper presents a new electronic methodology to detect DNA hybridization for rapid identificatio...
An integrated field-effect device for fully electronic deoxyribonucleic acid (DNA) detection was rea...
A novel solid-state biosensor for label-free detection of DNA hybridization is presented. The new de...
An integrated chip for DNA hybridization detection was realized in a standard CMOS process: it hosts...
The purpose of this research is to design a low power integrated complementary metal oxide semicondu...
A sensor for electrical detection of DNA is fabricated in a CMOS production line. A gold deposition ...
We have fabricated field effect transistor (FET)-type biomolecular sensor for the detection of the d...
A novel DNA sensor able to detect the DNA hybridization in liquids is presented. The device is a cha...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
The purpose of this research is to design a low power integrated complementary metal oxide semicondu...
Electronic DNA sensors based on field-effect transistor arrays operating in liquid environment, offe...
The labelfree detection of nucleic acid sequences is one of the modern attempts to develop quick, ch...
In this paper, the electronic transduction of DNA hybridization is presented by coupling organic cha...
An 8×16 array of sensing micro-sites employs a fully-electrical label-free technique for DNA recogni...
In this paper, the electronic transduction of DNA hybridization is presented by coupling organic cha...
This paper presents a new electronic methodology to detect DNA hybridization for rapid identificatio...
An integrated field-effect device for fully electronic deoxyribonucleic acid (DNA) detection was rea...
A novel solid-state biosensor for label-free detection of DNA hybridization is presented. The new de...
An integrated chip for DNA hybridization detection was realized in a standard CMOS process: it hosts...
The purpose of this research is to design a low power integrated complementary metal oxide semicondu...
A sensor for electrical detection of DNA is fabricated in a CMOS production line. A gold deposition ...
We have fabricated field effect transistor (FET)-type biomolecular sensor for the detection of the d...
A novel DNA sensor able to detect the DNA hybridization in liquids is presented. The device is a cha...
This paper presents a fully electronic label-free DNA chip in 0.5- m CMOS technology, with 5-V suppl...
The purpose of this research is to design a low power integrated complementary metal oxide semicondu...
Electronic DNA sensors based on field-effect transistor arrays operating in liquid environment, offe...
The labelfree detection of nucleic acid sequences is one of the modern attempts to develop quick, ch...
In this paper, the electronic transduction of DNA hybridization is presented by coupling organic cha...
An 8×16 array of sensing micro-sites employs a fully-electrical label-free technique for DNA recogni...
In this paper, the electronic transduction of DNA hybridization is presented by coupling organic cha...
This paper presents a new electronic methodology to detect DNA hybridization for rapid identificatio...