This article presents the implementation of on-chip iontronic circuits via small-scale integration of multiple ionic logic gates made of bi-polar polyelectrolyte diodes. These ionic circuits are analogous to solid-state electronic circuits, with ions as the charge carriers instead of electrons/holes. We experimentally characterize the responses of a single fluidic diode made of a junction of oppositely charged polyelectrolytes (i.e., anion and cation exchange membranes), with a similar underlying mechanism as a solid-state p- and n-type junction. This served to carry out pre-designed logical computations in various architectures by integrating multiple diode-based logic gates, where the electrical signal between the integrated gates was tra...
Single-track conical nanopores functionalized with polyprotic acid chains have pH-sensitive fixed ch...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
Integrated circuits are present in all electronic devices, and enable signal amplification, modulati...
Ionic circuits composed of nanopores functionalized with polyelectrolyte chains can operate in aqueo...
Ionic circuits composed of nanopores functionalized with polyelectrolyte chains can operate in aqueo...
[EN] Nanopore-based logical schemes in ionic solutions typically involve single gates and chemical i...
Iontronics rely on ions as charge carriers to produce and transmit signals, mimicking the informati...
Nanopore-based logical schemes in ionic solutions typically involve single gates and chemical inputs...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
Modern electronics has revolutionized the way information is processed and stored in our society. In...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
Ionic-type transistors are important devices for precise chemical control and biosensing application...
Ionic-type transistors are important devices for precise chemical control and biosensing application...
Integrated circuits are present in all electronic devices, and enable signal amplification, modulati...
Single-track conical nanopores functionalized with polyprotic acid chains have pH-sensitive fixed ch...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
Integrated circuits are present in all electronic devices, and enable signal amplification, modulati...
Ionic circuits composed of nanopores functionalized with polyelectrolyte chains can operate in aqueo...
Ionic circuits composed of nanopores functionalized with polyelectrolyte chains can operate in aqueo...
[EN] Nanopore-based logical schemes in ionic solutions typically involve single gates and chemical i...
Iontronics rely on ions as charge carriers to produce and transmit signals, mimicking the informati...
Nanopore-based logical schemes in ionic solutions typically involve single gates and chemical inputs...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
Modern electronics has revolutionized the way information is processed and stored in our society. In...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
Organic electronics, in combination with custom polyelectrolytes, enables solid- and hydrogel-state ...
Ionic-type transistors are important devices for precise chemical control and biosensing application...
Ionic-type transistors are important devices for precise chemical control and biosensing application...
Integrated circuits are present in all electronic devices, and enable signal amplification, modulati...
Single-track conical nanopores functionalized with polyprotic acid chains have pH-sensitive fixed ch...
In contrast to electronic systems, biology rarely uses electrons as the signal to regulate functions...
Integrated circuits are present in all electronic devices, and enable signal amplification, modulati...