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Designing organic mixed conductors for electrochemical transistor applications
The organic electrochemical transistor (OECT) has emerged as the core component of
specialized bioelectronic technologies, such as neural interfaces and sensors of disease …
specialized bioelectronic technologies, such as neural interfaces and sensors of disease …
A guide for the characterization of organic electrochemical transistors and channel materials
The organic electrochemical transistor (OECT) is one of the most versatile devices within the
bioelectronics toolbox, with its compatibility with aqueous media and the ability to transduce …
bioelectronics toolbox, with its compatibility with aqueous media and the ability to transduce …
Bioadhesive polymer semiconductors and transistors for intimate biointerfaces
The use of bioelectronic devices relies on direct contact with soft biotissues. For transistor-
type bioelectronic devices, the semiconductors that need to have direct interfacing with …
type bioelectronic devices, the semiconductors that need to have direct interfacing with …
Monolithically integrated high-density vertical organic electrochemical transistor arrays and complementary circuits
Organic electrochemical transistors (OECTs) can be used to create biosensors, wearable
devices and neuromorphic systems. However, restrictions in the micro-and nanopatterning …
devices and neuromorphic systems. However, restrictions in the micro-and nanopatterning …
Flexible organic transistors for biosensing: devices and applications
Flexible and stretchable biosensors can offer seamless and conformable biological–
electronic interfaces for continuously acquiring high‐fidelity signals, permitting numerous …
electronic interfaces for continuously acquiring high‐fidelity signals, permitting numerous …
Biomolecular sensors for advanced physiological monitoring
Body-based biomolecular sensing systems, including wearable, implantable and
consumable sensors allow comprehensive health-related monitoring. Glucose sensors have …
consumable sensors allow comprehensive health-related monitoring. Glucose sensors have …
Organic mixed conductors for electrochemical transistors
Organic electrochemical transistors (OECTs) have emerged as a powerful platform for
bioelectronic communication, enabling various technologies including neuromorphic …
bioelectronic communication, enabling various technologies including neuromorphic …
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 …
Functional metal–organic frameworks for maximizing transconductance of organic photoelectrochemical transistor at zero gate bias and biological interfacing …
G Gao, JH Chen, MJ **g, J Hu, Q Xu… - Advanced Functional …, 2023 - Wiley Online Library
Organic electrochemical transistors showing maximum transconductance (gm) at zero gate
bias (VG) is desired but has long been a challenge. To date, few solutions to this issue are …
bias (VG) is desired but has long been a challenge. To date, few solutions to this issue are …
MXene@MnIn2S4‐Gated Organic Photoelectrochemical Transistors with Nanozyme‐Mediated Multiple Quenching Effects for Ultrasensitive Detection of Okadaic …
J Chi, P Ju, F Bi, S Wang, T Jiang… - Advanced Functional …, 2024 - Wiley Online Library
Organic optoelectronics have attracted widespread interdisciplinary research interest but
lags far behind in the application in marine environmental detection. The organic …
lags far behind in the application in marine environmental detection. The organic …