AbstractIn this progress report an overview is given on the use of the organic electrochemical transistor (OECT) as a biosensor for impedance sensing of cell layers. The transient OECT current can be used to detect changes in the impedance of the cell layer, as shown by Jimison et al. To circumvent the application of a high gate bias and preventing electrolysis of the electrolyte, in case of small impedance variations, an alternative measuring technique based on an OECT in a current‐driven configuration is developed. The ion‐sensitivity is larger than 1200 mV V‐1dec‐1 at low operating voltage. It can be even further enhanced using an OECT based complementary amplifier, which consists of a p‐type and an n‐type OECT connected in series, as kn...
The portability of physiological monitoring has necessitated the biocompatibility of components used...
Semiconducting polymers are very promising materials for biomedical application, thanks to the abili...
Semiconducting polymers are very promising materials for biomedical application, thanks to the abili...
In this progress report an overview is given on the use of the organic electrochemical transistor (O...
Research on electrolyte-gated and organic electrochemical transistor (OECT) architectures is motivat...
Research on electrolyte-gated and organic electrochemical transistor (OECT) architectures is motivat...
Interfacing organic electrochemical transistors (OECTs) with biological systems holds considerable p...
The integrity of CaCo-2 cell barriers is investigated by organic electrochemical transistors (OECTs)...
Biological environments use ions in charge transport for information transmission. The properties of...
AbstractThe barrier functionality of a cell layer regulates the passage of nutrients into the blood....
The development of transistors with high gain is crucial for applications where extracellular potent...
The development of transistors with high gain is crucial for applications where extracellular potent...
The barrier functionality of a cell layer regulates the passage of nutrients into the blood. Modulat...
Current technologies to monitor formation and disruption in in vitro cell cultures are based either ...
Semiconducting polymers are very promising materials for biomedical application, thanks to the abili...
The portability of physiological monitoring has necessitated the biocompatibility of components used...
Semiconducting polymers are very promising materials for biomedical application, thanks to the abili...
Semiconducting polymers are very promising materials for biomedical application, thanks to the abili...
In this progress report an overview is given on the use of the organic electrochemical transistor (O...
Research on electrolyte-gated and organic electrochemical transistor (OECT) architectures is motivat...
Research on electrolyte-gated and organic electrochemical transistor (OECT) architectures is motivat...
Interfacing organic electrochemical transistors (OECTs) with biological systems holds considerable p...
The integrity of CaCo-2 cell barriers is investigated by organic electrochemical transistors (OECTs)...
Biological environments use ions in charge transport for information transmission. The properties of...
AbstractThe barrier functionality of a cell layer regulates the passage of nutrients into the blood....
The development of transistors with high gain is crucial for applications where extracellular potent...
The development of transistors with high gain is crucial for applications where extracellular potent...
The barrier functionality of a cell layer regulates the passage of nutrients into the blood. Modulat...
Current technologies to monitor formation and disruption in in vitro cell cultures are based either ...
Semiconducting polymers are very promising materials for biomedical application, thanks to the abili...
The portability of physiological monitoring has necessitated the biocompatibility of components used...
Semiconducting polymers are very promising materials for biomedical application, thanks to the abili...
Semiconducting polymers are very promising materials for biomedical application, thanks to the abili...