We demonstrate an electrochemical sensor for detection of unlabeled single-stranded DNA using peptide nucleic acid (PNA) probes coupled to the field-effect transistor (FET) gate. The label-free detection relies on the intrinsic charge of the DNA backbone. Similar detection schemes have mainly concentrated on sensitivity improvement with an emphasis on new sensor structures. Our approach focuses on using an extended-gate that separates the FET and the sensing electrode yielding a simple and mass fabricable device. We used PNA probes for efficient hybridization in low salt conditions that is required to avoid the counter ion screening. As a result, significant part of the target DNA lies within the screening length of the sensor. With this, w...
A reduced graphene oxide (R-GO)-based field-effect transistor (FET) biosensor used for ultrasensitiv...
International audienceA DNA sensor based on a water-gated organic field-effect transistor is describ...
International audienceA DNA sensor based on a water-gated organic field-effect transistor is describ...
We demonstrate an electrochemical sensor for detection of unlabeled single-stranded DNA using peptid...
The labelfree detection of nucleic acid sequences is one of the modern attempts to develop quick, ch...
Electronic DNA sensors based on field-effect transistor arrays operating in liquid environment, offe...
Organic electrochemical transistors are integrated in flexible microfluidic systems. A novel label-f...
In the last decade the use of field-effect-based devices has become a basic structural element in a ...
In the last decade the use of field-effect-based devices has become a basic structural element in a ...
We report a method to measure DNA hybridization potentiometrically in a manner conducive to portable...
An organic ultra-low voltage field effect transistor for DNA hybridization detection is presented. T...
WOS: 000182962500010An electrochemical hybridization biosensor based on peptide nucleic acid (PNA) p...
We present a novel assay for rapid and high sensitivity detection of nucleic acids without amplifica...
Here we demonstrate the design and construction of a simple, highly sensitive and selective nanoflui...
Here we demonstrate the design and construction of a simple, highly sensitive and selective nanoflui...
A reduced graphene oxide (R-GO)-based field-effect transistor (FET) biosensor used for ultrasensitiv...
International audienceA DNA sensor based on a water-gated organic field-effect transistor is describ...
International audienceA DNA sensor based on a water-gated organic field-effect transistor is describ...
We demonstrate an electrochemical sensor for detection of unlabeled single-stranded DNA using peptid...
The labelfree detection of nucleic acid sequences is one of the modern attempts to develop quick, ch...
Electronic DNA sensors based on field-effect transistor arrays operating in liquid environment, offe...
Organic electrochemical transistors are integrated in flexible microfluidic systems. A novel label-f...
In the last decade the use of field-effect-based devices has become a basic structural element in a ...
In the last decade the use of field-effect-based devices has become a basic structural element in a ...
We report a method to measure DNA hybridization potentiometrically in a manner conducive to portable...
An organic ultra-low voltage field effect transistor for DNA hybridization detection is presented. T...
WOS: 000182962500010An electrochemical hybridization biosensor based on peptide nucleic acid (PNA) p...
We present a novel assay for rapid and high sensitivity detection of nucleic acids without amplifica...
Here we demonstrate the design and construction of a simple, highly sensitive and selective nanoflui...
Here we demonstrate the design and construction of a simple, highly sensitive and selective nanoflui...
A reduced graphene oxide (R-GO)-based field-effect transistor (FET) biosensor used for ultrasensitiv...
International audienceA DNA sensor based on a water-gated organic field-effect transistor is describ...
International audienceA DNA sensor based on a water-gated organic field-effect transistor is describ...