The rising field of bioelectronics, which couples the realms of electronics and biology, holds huge potential for the development of novel biomedical devices for therapeutics and diagnostics. Organic electronic devices are particularly promising; the use of robust organic electronic materials provides an ideal bio-interface due to their reported biocompatibility, and mechanical matching between the sensor element and the biological environment, are amongst the advantages unique to this class of materials. One promising device emerging from this field is the organic electrochemical transistor (OECT). The OECT combines properties and characteristics that can be tuned for a wide spectrum of biological applications. These applications have allo...
AbstractIn this progress report an overview is given on the use of the organic electrochemical trans...
Organic electrochemical transistors (OECTs) are presently a focus of intense research and hold great...
This review first recalls the basic functioning principles of organic electrochemical transistors (O...
The rising field of bioelectronics, which couples the realms of electronics and biology, holds huge ...
Pas de résumé en français seulement en anglaisThe emergence of organic electronics a technology that...
The emergence of organic electronics – a technology that relies on carbon-based semiconductors to de...
Rapid and early diagnosis of disease plays a major role in preventative healthcare. Undoubtedly, tec...
Electrical signals are fundamental to key biological events such as brain activity, heartbeat, or vi...
A visible trend over the past few years involves the application of organic electronic materials to ...
The generation of novel materials to harness the power of biological sensors is extremely attractive...
Drug and toxicity assays are necessary to develop advanced treatments as a way of improving diagnost...
Over the past decade conducting polymer electrodes have played an important role in bio-sensing and ...
The development of transistors with high gain is crucial for applications where extracellular potent...
International audienceWe demonstrate a glucose sensor based on an organic electrochemical transistor...
AbstractIn this progress report an overview is given on the use of the organic electrochemical trans...
Organic electrochemical transistors (OECTs) are presently a focus of intense research and hold great...
This review first recalls the basic functioning principles of organic electrochemical transistors (O...
The rising field of bioelectronics, which couples the realms of electronics and biology, holds huge ...
Pas de résumé en français seulement en anglaisThe emergence of organic electronics a technology that...
The emergence of organic electronics – a technology that relies on carbon-based semiconductors to de...
Rapid and early diagnosis of disease plays a major role in preventative healthcare. Undoubtedly, tec...
Electrical signals are fundamental to key biological events such as brain activity, heartbeat, or vi...
A visible trend over the past few years involves the application of organic electronic materials to ...
The generation of novel materials to harness the power of biological sensors is extremely attractive...
Drug and toxicity assays are necessary to develop advanced treatments as a way of improving diagnost...
Over the past decade conducting polymer electrodes have played an important role in bio-sensing and ...
The development of transistors with high gain is crucial for applications where extracellular potent...
International audienceWe demonstrate a glucose sensor based on an organic electrochemical transistor...
AbstractIn this progress report an overview is given on the use of the organic electrochemical trans...
Organic electrochemical transistors (OECTs) are presently a focus of intense research and hold great...
This review first recalls the basic functioning principles of organic electrochemical transistors (O...