Liquid electrolyte-gated organic field effect transistors and organic electrochemical transistors have recently emerged as powerful technology platforms for sensing and simulation of living cells and organisms. For such applications, the transistors are operated at a gate voltage around or below 0.3 V because prolonged application of a higher voltage bias can lead to membrane rupturing and cell death. This constraint often prevents the operation of the transistors at their maximum transconductance or most sensitive regime. Here, we exploit a solid–liquid dual-gate organic transistor structure, where the threshold voltage of the liquid-gated conduction channel is controlled by an additional gate that is separated from the channel by a metal-...
Successful translation of organic transistors as sensors and transducers to clinical settings is ham...
Organic electronic materials offer an untapped potential for novel tools for low-invasive electrophy...
Biorecognition is a central event in biological processes in the living systems that is also widely ...
There is a quest for electronic biosensors operated in water for biomedical applications and environ...
There is a quest for electronic biosensors operated in water for biomedical applications and environ...
Electronic transducers of neuronal cellular activity are important devices in neuroscience and neuro...
Electronic transducers of neuronal cellular activity are important devices in neuroscience and neuro...
High levels of performance and stability have been demonstrated for conjugated polymer thin-film tra...
Electrolyte-Gated Organic Field-Effect Transistors (EGOFETs) offer many opportunities for the develo...
Buried electrodes and protection of the semiconductor with a thin passivation layer are used to yiel...
Buried electrodes and protection of the semiconductor with a thin passivation layer are used to yiel...
We demonstrate a tunable threshold voltage in an organic field-effect transistor (OFET) using an ion...
Electrolyte-gated transistors (EGTs) with floating gates (FGs) are an emerging platform for label-fr...
The ability of field effect transistors (FETs) to detect charge variations on the gate may be exploi...
Tuning the threshold voltage in electrolyte-gated organic field-effect transistor
Successful translation of organic transistors as sensors and transducers to clinical settings is ham...
Organic electronic materials offer an untapped potential for novel tools for low-invasive electrophy...
Biorecognition is a central event in biological processes in the living systems that is also widely ...
There is a quest for electronic biosensors operated in water for biomedical applications and environ...
There is a quest for electronic biosensors operated in water for biomedical applications and environ...
Electronic transducers of neuronal cellular activity are important devices in neuroscience and neuro...
Electronic transducers of neuronal cellular activity are important devices in neuroscience and neuro...
High levels of performance and stability have been demonstrated for conjugated polymer thin-film tra...
Electrolyte-Gated Organic Field-Effect Transistors (EGOFETs) offer many opportunities for the develo...
Buried electrodes and protection of the semiconductor with a thin passivation layer are used to yiel...
Buried electrodes and protection of the semiconductor with a thin passivation layer are used to yiel...
We demonstrate a tunable threshold voltage in an organic field-effect transistor (OFET) using an ion...
Electrolyte-gated transistors (EGTs) with floating gates (FGs) are an emerging platform for label-fr...
The ability of field effect transistors (FETs) to detect charge variations on the gate may be exploi...
Tuning the threshold voltage in electrolyte-gated organic field-effect transistor
Successful translation of organic transistors as sensors and transducers to clinical settings is ham...
Organic electronic materials offer an untapped potential for novel tools for low-invasive electrophy...
Biorecognition is a central event in biological processes in the living systems that is also widely ...