Center for Organic Photonics and Electronics (COPE), School of Electrical and Computer Engineering, Georgia Institute of Technology , Atlanta, Georgia 30332-0250, United States.
ACS Appl Mater Interfaces. 2014 Feb 12;6(3):1616-22. doi: 10.1021/am404460j. Epub 2014 Jan 21.
The use of organic field-effect transistors (OFETs) as sensors in aqueous media has gained increased attention for environmental monitoring and medical diagnostics. However, stable operation of OFETs in aqueous media is particularly challenging because of electrolytic hydrolysis of water, high ionic conduction through the analyte, and irreversible damage of organic semiconductors when exposed to water. To date, OFET sensors have shown the capability of label-free sensing of various chemical/biological species, but they could only be used once because their operational stability and lifetime while operating in aqueous environments has been poor, and their response times typically slow. Here, we report on OFETs with unprecedented water stability. These OFETs are suitable for the implementation of reusable chemical/biological sensors because they primarily respond to charged species diluted in an aqueous media by rapidly shifting their threshold voltage. These OFET sensors present stable current baselines and saturated signals which are ideal for detection of low concentration of small or large molecules that alter the pH of an aqueous environment. The overall response of these OFET sensors paves the way for the development of continuous chemical/biological nondestructive sensor applications in aqueous media.
有机场效应晶体管(OFET)作为传感器在水介质中得到了越来越多的关注,可用于环境监测和医疗诊断。然而,由于水的电解水解、分析物的高离子传导以及有机半导体暴露于水时的不可逆损坏,使得 OFET 在水介质中稳定运行特别具有挑战性。迄今为止,OFET 传感器已经展示了对各种化学/生物物种进行无标记传感的能力,但它们只能使用一次,因为它们在水环境中的工作稳定性和寿命很差,而且它们的响应时间通常很慢。在这里,我们报告了具有前所未有的水稳定性的 OFET。这些 OFET 适用于可重复使用的化学/生物传感器的实施,因为它们主要通过快速改变其阈值电压来响应稀释在水介质中的带电物质。这些 OFET 传感器具有稳定的电流基线和饱和信号,非常适合检测改变水环境 pH 值的低浓度小分子或大分子。这些 OFET 传感器的整体响应为在水介质中开发连续的化学/生物无损传感器应用铺平了道路。