arrow
Return

OECT - Inspired electrical detection

delete2024-08-01
delete1
PRE
AI
于世新 cover
于世新 (Shixin Yu)
孙
孙晓君 (Xiaojun Sun)
刘婧靖 cover
刘婧靖 (Jingjing Liu) *
李双 cover
李双 (Shuang Li) *
DOI:10.1016/j.talanta.2024.126180delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Organic Electrochemical Transistors (OECTs) are integral in detecting human bioelectric signals, attributing their significance to distinct electrochemical properties, the utilization of soft materials, compact dimensions, and pronounced biocompatibility. This review traverses the technological evolution of OECT, highlighting its profound impact on non-invasive detection methodologies within the biomedicalfield. Four sensor types rooted in OECT technology were introduced: Electrocardiogram (ECG), Electroencephalogram (EEG), Electromyography (EMG), and Electrooculography (EOG), which hold promise for integration into wearable detection systems. The fundamental detection principles, material compositions, and functional attributes of these sensors are examined. Additionally, the performance metrics and delineates viable optimization strategies for assorted physiological electrical detection sensors are discussed. The overarching goal of this review is to foster deeper insights into the generation, propagation, and modulation of electrophysiological signals, thereby advancing the application and development of OECT in medical sciences.
Keywords:
Organic electrochemical transistor (OECT)
Electrical signals
Biosensors

Journal

Talanta cover
Talanta
IF:
6.1
Papers:
2.6W
Citations:
6.3W

Organization

T
tianjin university
Scholars:
8.0W
Papers: 5.8W
Citations: 88
N
northeast electric power university
Scholars:
5.8K
Papers: 3.3K
Citations: 1
Cited Papers

Cited Papers

Challenges of UAVs Adoption for Agricultural Pesticide Spraying: A Social Cognitive Perspective
err
IF0
err2020-01-12
err0
errOAAI
errTing-Chu Hsieh; Ming-Chien Hung; Mai-Lun Chiu; Pay-Jiing Wu
errShare
errSave
Organic Electrochemical Transistor Common-Source Amplifier for Electrophysiological Measurements
err2021-06-12
err11
errOAAI
errTyrrell, James E.; Petkos, Konstantinos; Drakakis, Emmanuel M.; Boutelle, Martyn G.; Campbell, Alasdair J.
errShare
errSave
Stretchable Redox-Active Semiconducting Polymers for High-Performance Organic Electrochemical Transistors
err2022-05-02
err68
errOAAI
errDai, Yahao; Dai, Shilei; Li, Nan; Li, Yang; Moser, Maximilian; Strzalka, Joseph; Prominski, Aleksander; Liu, Youdi; Zhang, Qingteng; Li, Songsong; Hu, Huawei; Liu, Wei; Chatterji, Shivani; Cheng, Ping; Tian, Bozhi; McCulloch, Iain; Xu, Jie; Wang, Sihong
errShare
errSave
errShare
errSave
Pushing OECTs toward Wearable: Development of a Miniaturized Analytical Control Unit for Wireless Device Characterization
err2022-04-06
err20
PREAI
errTian, Xinyu; Liu, Dingyao; Bai, Jing; Chan, Kai San; Ip, Long Ching; Chan, Paddy K. L.; Zhang, Shiming
errShare
errSave
Organic Electrochemical Transistors for Clinical Applications
err2014-09-29
err138
PREAI
errLeleux, Pierre; Rivnay, Jonathan; Lonjaret, Thomas; Badier, Jean-Michel; Benar, Christian; Herve, Thierry; Chauvel, Patrick; Malliaras, George G.
errShare
errSave
Nonthrombogenic, stretchable, active multielectrode array for electroanatomical mapping
err2018-10-05
err177
errOAAI
errLee, Wonryung; Kobayashi, Shingo; Nagase, Masase; Jimbo, Yasutoshi; Saito, Itsuro; Inoue, Yusuke; Yambe, Tomoyuki; Sekino, Masaki; Malliaras, George G.; Yokota, Tomoyuki; Tanaka, Masaru; Someya, Takao
errShare
errSave
Electrocardiographic Recording with Conformable Organic Electrochemical Transistor Fabricated on Resorbable Bioscaffold
err2014-03-18
err271
errOAAI
errCampana, Alessandra; Cramer, Tobias; Simon, Daniel T.; Berggren, Magnus; Biscarini, Fabio
errShare
errSave
researcher View more