材料科学
多巴胺
晶体管
纳米技术
可穿戴技术
纤维
电化学
电极
可穿戴计算机
光电子学
复合材料
电气工程
计算机科学
电压
神经科学
化学
嵌入式系统
物理化学
工程类
生物
作者
Xing Qing,Yuedan Wang,Yang Zhang,Xincheng Ding,Weibing Zhong,Dong Wang,Wenwen Wang,Qiongzhen Liu,Ke Liu,Mufang Li,Zhentan Lu
标识
DOI:10.1021/acsami.9b00115
摘要
Fiber-based organic electrochemical transistors (FECTs) provide a new platform for the realization of an ultrafast and ultrasensitive biosensor, especially for the wearable dopamine (DA)-monitoring device. Here, we presented a fully filament-integrated fabric, it exhibited remarkable mechanical compatibility with the human body, and the minimum sensing unit was an organic electrochemical transistor (OECT) based on PVA- co-PE nanofibers (NFs) and polypyrrole (PPy) nanofiber network. The introduction of NFs notably increased the specific surface area and hydrophilicity of the PA6 filament, resulting in the formation of a large area of intertwined PPy nanofiber network. The electrical performance of PPy nanofiber network-modified fibers improved considerably. For the common FECTs, the typical on/off ratio was up to two orders of magnitude, and the temporal recovery time between on and off states was shortened to 0.34 s. Meanwhile, the device exhibited continuous cycling stability. In addition, the performances of FECT-based dopamine sensors depending on different gate electrodes have also been investigated. The PPy/NFs/PA6 filament-based dopamine sensor was more superior to the gold and platinum (Pt) wires, and the sensor presented long-term sensitivity with a detection region from 1 nM to 1 μM, rapid response time to a set of DA concentrations, remarkable selectivity in the presence of sodium chloride, uric acid, ascorbic acid and glucose, and superior reproducibility. Moreover, it could also be woven into the fabric product. The novel and wearable FECT device shows the potential to become the state-of-the-art DA-monitoring platform.
科研通智能强力驱动
Strongly Powered by AbleSci AI