College of Materials Science and Engineering , Wuhan Textile University , Wuhan 430200 , China.
Hubei Key Laboratory of Advanced Textile Materials & Application , Wuhan 430200 , China.
ACS Appl Mater Interfaces. 2019 Apr 10;11(14):13105-13113. doi: 10.1021/acsami.9b00115. Epub 2019 Mar 29.
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.
基于纤维的有机电化学晶体管 (FECT) 为实现超快速和超高灵敏度的生物传感器提供了一个新平台,尤其适用于可穿戴多巴胺 (DA) 监测设备。在这里,我们提出了一种完全由纤维集成的织物,它与人体具有出色的机械兼容性,最小的感应单元是基于 PVA-共-PE 纳米纤维 (NF) 和聚吡咯 (PPy) 纳米纤维网络的有机电化学晶体管 (OECT)。NF 的引入显著增加了 PA6 纤维的比表面积和亲水性,从而形成了大面积交织的 PPy 纳米纤维网络。PPy 纳米纤维网络修饰纤维的电性能得到了显著提高。对于常见的 FECT,典型的导通/关断比高达两个数量级,导通和关断状态之间的时间恢复时间缩短至 0.34 s。同时,该器件表现出连续的循环稳定性。此外,还研究了基于 FECT 的多巴胺传感器的性能取决于不同的栅极电极。基于 PPy/NFs/PA6 纤维的多巴胺传感器比金和铂 (Pt) 线更优越,传感器具有从 1 nM 到 1 μM 的检测区域的长期灵敏度、对一系列 DA 浓度的快速响应时间、在存在氯化钠、尿酸、抗坏血酸和葡萄糖时的显著选择性以及出色的重现性。此外,它还可以编织到织物产品中。新型可穿戴 FECT 器件显示出成为最先进的 DA 监测平台的潜力。