论文标题
使用单壁碳纳米管场效应晶体管的电化学葡萄糖传感器
Electrochemical Glucose Sensor using Single-Wall Carbon Nanotube Field Effect Transistor
论文作者
论文摘要
在本文中,我们提出了一种简单而灵敏的方法,用于使用基于碳纳米管的晶体管晶体管(CNTFET)的生物传感器进行葡萄糖传感。 CNT被很好地分散以形成CNT网络并保持CNT之间的功能连接,从而增加了通过网络的电子传输,从而增加了电子读数。此外,葡萄糖氧化酶(GOX)分子被CNT官能化固定,形成有效和敏感的CNT网络作为FET通道。 CNT与接头(1-吡啶二甲酸琥珀酰亚胺基酯)一起功能化,以将GOX固定在CNT上,其中GOX用作CNTS和葡萄糖之间的介体进行电子转移。液体分析物葡萄糖通过释放CNTFET通道中的其他电子,从而通过GOX和接头吸附在CNT上,从而增加CNTFET读数电流。靶葡萄糖分子和GOX的结合模拟了FET通道的栅极电位,并实时记录了传感器的电子响应。此外,观察到CNTFET生物传感器的电子读数的变化,并由于每个设备上的CNT分散剂的变化而进行了规定。总体而言,这项工作提出了使用CNTFET传感器对葡萄糖检测的简单,快速,敏感,低成本和低浓度(0.01 mm)。
In this paper, we present a simple yet sensitive method for glucose sensing using carbon nanotube field-effect transistor (CNTFET) based biosensor. The CNTs were well-dispersed to form CNT networks and maintain functional connectivity among CNTs, which increases the electron transfer through the network and thus, the electronic readout. Moreover, glucose oxidase (GOx) molecules are immobilized by CNT functionalization to form effective and sensitive CNT networks as FET channel. The CNTs are functionalized with linkers (1-pyrenebutanoic acid succinimidyl ester) to immobilize GOx on CNTs, where GOx serves as a mediator between CNTs and glucose for electron transfer. The liquid analyte glucose is adsorbed on CNTs via GOx and linkers by releasing additional electrons in the CNTFET channel and thus, increasing the CNTFET readout current. The binding of the target glucose molecules and GOx emulates the gate potential of FET channel and the electronic response of the sensor is recorded in real-time. Moreover, the variations in electronic readout of CNTFET biosensor are observed and is stipulated due to variation in CNT dispersion on each device. Overall, this work presents a simple, fast, sensitive, low-cost, and low concentration (0.01 mM) detection of glucose using CNTFET sensors.