The effect of device architecture upon the response of printable enzymatic glucose sensors based on poly(3-hexythiophene) (P3HT) organic thin film transistors is presented. The change in drain current is used as the basis for glucose detection and we show that significant improvements in drain current response time can be achieved by modifying the design of the sensor structure. In particular, we show that eliminating the dielectric layer and reducing the thickness of the active layer reduce the device response time considerably. The results are in good agreement with a diffusion based model of device operation, where an initial rapid dedoping process is followed by a slower doping of the P3HT layer from protons that are enzymatically gener...
We demonstrate a glucose sensor based on an organic electrochemical transistor (OECT) in which the c...
Organic bioelectronic sensors based on an electrolyte gated field-effect transistor are gaining mome...
A flexible, biological field-effect transistor (BioFET) for use in biosensing is reported. The BioFE...
As conducting polymer based devices, organic electrochemical transistors (OECTs) are suited for prin...
Biosensor technology is an expanding field of research and there is a great market demand for low-co...
Piezoelectric inkjet printing of polymers and proteins holds great promise for fabrication of miniat...
Sensor devices that can be fabricated on a flexible plastic film produced at a low cost using inkjet...
We demonstrate fully inkjet-printed graphene-gated Organic Electrochemical Transistors (OECTs) on po...
The prototype of an amperometric glucose biosensorwas realized by thermal inkjet printing using biol...
A glucose sensor based on an organic electrochemical transistor (OECT) structure was prepared by vap...
This paper proposes a simple and rapid fabrication of a glucose sensor based on inkjet printing meth...
We present for the first time biofunctionalization and biocompatibibility studies of solution-proces...
A simple glucose biosensor with micromolar sensitivity is reported. The sensor utilizes a conducting...
[[abstract]]In this study, we present a potentiometric glucose biosensor based on a separative exten...
We demonstrate a glucose sensor based on an organic electrochemical transistor (OECT) in which the c...
We demonstrate a glucose sensor based on an organic electrochemical transistor (OECT) in which the c...
Organic bioelectronic sensors based on an electrolyte gated field-effect transistor are gaining mome...
A flexible, biological field-effect transistor (BioFET) for use in biosensing is reported. The BioFE...
As conducting polymer based devices, organic electrochemical transistors (OECTs) are suited for prin...
Biosensor technology is an expanding field of research and there is a great market demand for low-co...
Piezoelectric inkjet printing of polymers and proteins holds great promise for fabrication of miniat...
Sensor devices that can be fabricated on a flexible plastic film produced at a low cost using inkjet...
We demonstrate fully inkjet-printed graphene-gated Organic Electrochemical Transistors (OECTs) on po...
The prototype of an amperometric glucose biosensorwas realized by thermal inkjet printing using biol...
A glucose sensor based on an organic electrochemical transistor (OECT) structure was prepared by vap...
This paper proposes a simple and rapid fabrication of a glucose sensor based on inkjet printing meth...
We present for the first time biofunctionalization and biocompatibibility studies of solution-proces...
A simple glucose biosensor with micromolar sensitivity is reported. The sensor utilizes a conducting...
[[abstract]]In this study, we present a potentiometric glucose biosensor based on a separative exten...
We demonstrate a glucose sensor based on an organic electrochemical transistor (OECT) in which the c...
We demonstrate a glucose sensor based on an organic electrochemical transistor (OECT) in which the c...
Organic bioelectronic sensors based on an electrolyte gated field-effect transistor are gaining mome...
A flexible, biological field-effect transistor (BioFET) for use in biosensing is reported. The BioFE...