Flexible and stretchable organic electrochemical transistors for physiological sensing devices
Flexible and stretchable bioelectronics provides a biocompatible interface between
electronics and biological systems and has received tremendous attention for in situ …
electronics and biological systems and has received tremendous attention for in situ …
Organic electrochemical transistors
Organic electrochemical transistors (OECTs) make effective use of ion injection from an
electrolyte to modulate the bulk conductivity of an organic semiconductor channel. The …
electrolyte to modulate the bulk conductivity of an organic semiconductor channel. The …
Interfaces in organic electronics
Undoped, conjugated, organic molecules and polymers possess properties of
semiconductors, including the electronic structure and charge transport, which can be …
semiconductors, including the electronic structure and charge transport, which can be …
Organic bioelectronics: bridging the signaling gap between biology and technology
The electronics surrounding us in our daily lives rely almost exclusively on electrons as the
dominant charge carrier. In stark contrast, biological systems rarely use electrons but rather …
dominant charge carrier. In stark contrast, biological systems rarely use electrons but rather …
25th anniversary article: the evolution of electronic skin (e‐skin): a brief history, design considerations, and recent progress
Human skin is a remarkable organ. It consists of an integrated, stretchable network of
sensors that relay information about tactile and thermal stimuli to the brain, allowing us to …
sensors that relay information about tactile and thermal stimuli to the brain, allowing us to …
Internal ion-gated organic electrochemical transistor: A building block for integrated bioelectronics
Real-time processing and manipulation of biological signals require bioelectronic devices
with integrated components capable of signal amplification, processing, and stimulation …
with integrated components capable of signal amplification, processing, and stimulation …
Flexible organic electronics in biology: materials and devices
At the convergence of organic electronics and biology, organic bioelectronics attracts great
scientific interest. The potential applications of organic semiconductors to reversibly transmit …
scientific interest. The potential applications of organic semiconductors to reversibly transmit …
High transconductance organic electrochemical transistors
The development of transistors with high gain is essential for applications ranging from
switching elements and drivers to transducers for chemical and biological sensing. Organic …
switching elements and drivers to transducers for chemical and biological sensing. Organic …
Organic thin‐film transistors for chemical and biological sensing
Organic thin‐film transistors (OTFTs) show promising applications in various chemical and
biological sensors. The advantages of OTFT‐based sensors include high sensitivity, low …
biological sensors. The advantages of OTFT‐based sensors include high sensitivity, low …
The organic electrochemical transistor for biological applications
X Strakosas, M Bongo… - Journal of Applied Polymer …, 2015 - Wiley Online Library
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 …
huge potential for the development of novel biomedical devices for therapeutics and …