Department of Electronic Materials Engineering, Kwangwoon University, 447-1 Wolgye-dong, Nowon-gu, Seoul 139-701, Korea.
Int J Mol Sci. 2022 Sep 16;23(18):10842. doi: 10.3390/ijms231810842.
In this study, we propose tunable pH sensors based on the electric-double-layer transistor (EDLT) with time-dependent sensitivity characteristics. The EDLT is able to modulate the drain current by using the mobile ions inside the electrolytic gate dielectric. This property allows the implementation of a device with sensitivity characteristics that are simply adjusted according to the measurement time. An extended gate-type, ion-sensitive, field-effect transistor consisting of a chitosan/Ta2O5 hybrid dielectric EDLT transducer, and an SnO2 sensing membrane, were fabricated to evaluate the sensing behavior at different buffer pH levels. As a result, we were able to achieve tunable sensitivity by only adjusting the measurement time by using a single EDLT and without additional gate electrodes. In addition, to demonstrate the unique sensing behavior of the time-dependent tunable pH sensors based on organic−inorganic hybrid EDLT, comparative sensors consisting of a normal FET with a SiO2 gate dielectric were prepared. It was found that the proposed pH sensors exhibit repeatable and stable sensing operations with drain current deviations <1%. Therefore, pH sensors using a chitosan electrolytic EDLT are suitable for biosensor platforms, possessing tunable sensitivity and high-reliability characteristics.
在这项研究中,我们提出了基于具有时变灵敏度特性的双电层晶体管(EDLT)的可调谐 pH 传感器。EDLT 能够通过使用电解质栅介质中的可移动离子来调制漏极电流。这种特性允许实现一种具有简单根据测量时间调整的灵敏度特性的器件。我们制造了一种扩展栅型、离子敏感、场效应晶体管,它由壳聚糖/Ta2O5 混合介电 EDLT 换能器和 SnO2 传感膜组成,以评估在不同缓冲 pH 值下的传感行为。结果,我们能够通过仅使用单个 EDLT 并无需额外的栅电极来调整测量时间,从而实现可调谐灵敏度。此外,为了展示基于有机-无机混合 EDLT 的时变可调谐 pH 传感器的独特传感行为,我们制备了由具有 SiO2 栅介质的普通 FET 组成的比较传感器。结果发现,所提出的 pH 传感器具有小于 1%的漏极电流偏差的可重复和稳定的传感操作。因此,使用壳聚糖电解质 EDLT 的 pH 传感器适用于生物传感器平台,具有可调谐灵敏度和高可靠性特性。