Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state circuit components using ionic charges in place of the electrons of traditional electronics. This growing field of iontronics leverages anion- and cation-exchange membranes as analogs to n-type and p-type semiconductors, and conjugated polymer electrodes as ion-to-electron converters. To date, the iontronics toolbox includes ionic resistors, ionic diodes, ionic transistors, and analog and digital circuits comprised thereof. Here, an ionic capacitor based on mixed electron-ion conductors is demonstrated. The ionic capacitor resembles the structure of a conventional electrochemical capacitor that is inverted, with an electronically conducting c...
The bioelectronics field has incorporated an increasing variety of conducting polymers in applicatio...
The discovery of semi-conducting and conducting organic materials has opened new possibilities for e...
A mixed ionic–electronic conductor based on nanofibrillated cellulose composited with poly(3,4-ethyl...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
The coupling between charge accumulation in a conjugated polymer and the ionic charge compensation, ...
This article presents the implementation of on-chip iontronic circuits via small-scale integration o...
Polymer electrolyte, comprised of ionic conductors, polymer matrix, and additives, is one of the key...
Polymer electrolyte, comprised of ionic conductors, polymer matrix, and additives, is one of the key...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
Iontronics rely on ions as charge carriers to produce and transmit signals, mimicking the informati...
In the 1970s it was discovered that organic polymers, a class of materials otherwise best know as in...
Electrochemical capacitors (ECs) are energy storage devices with high power density and high efficie...
The bioelectronics field has incorporated an increasing variety of conducting polymers in applicatio...
The discovery of semi-conducting and conducting organic materials has opened new possibilities for e...
A mixed ionic–electronic conductor based on nanofibrillated cellulose composited with poly(3,4-ethyl...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
The coupling between charge accumulation in a conjugated polymer and the ionic charge compensation, ...
This article presents the implementation of on-chip iontronic circuits via small-scale integration o...
Polymer electrolyte, comprised of ionic conductors, polymer matrix, and additives, is one of the key...
Polymer electrolyte, comprised of ionic conductors, polymer matrix, and additives, is one of the key...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
Iontronics rely on ions as charge carriers to produce and transmit signals, mimicking the informati...
In the 1970s it was discovered that organic polymers, a class of materials otherwise best know as in...
Electrochemical capacitors (ECs) are energy storage devices with high power density and high efficie...
The bioelectronics field has incorporated an increasing variety of conducting polymers in applicatio...
The discovery of semi-conducting and conducting organic materials has opened new possibilities for e...
A mixed ionic–electronic conductor based on nanofibrillated cellulose composited with poly(3,4-ethyl...