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首页> 外文期刊>Journal of nanomaterials >Graphene Channel Liquid Container Field Effect Transistor as pH Sensor
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Graphene Channel Liquid Container Field Effect Transistor as pH Sensor

机译:石墨烯通道液体容器场效应晶体管作为pH传感器

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摘要

Graphene channel liquid container field effect transistor pH sensor with interdigital microtrench for liquid ion testing is presented. Growth morphology and pH sensing property of continuous few-layer graphene (FLG) and quasi-continuous monolayer graphene (MG) channels are compared. The experiment results show that the source-to-drain current of the graphene channel FET has a significant and fast response after adsorption of the measured molecule and ion at the room temperature; at the same time, the FLG response time is less than 4 s. The resolution of MG (0.01) on pH value is one order of magnitude higher than that of FLG (0.1). The reason is that with fewer defects, the MG is more likely to adsorb measured molecule and ion, and the molecules and ions can make the transport property change. The output sensitivities of MG are from 34.5% to 57.4% when the pH value is between 7 and 8, while sensitivity of FLG is 4.75% when thepH=7. The sensor fabrication combines traditional silicon technique and flexible electronic technology and provides an easy way to develop graphene-based electrolyte gas sensor or even biological sensors.
机译:提出了具有叉指式微沟槽的石墨烯通道液体容器场效应晶体管pH传感器,用于液体离子测试。比较了连续几层石墨烯(FLG)和准连续单层石墨烯(MG)通道的生长形态和pH敏感特性。实验结果表明,在室温下吸附被测分子和离子后,石墨烯沟道FET的源漏电流具有明显而快速的响应。同时,FLG响应时间小于4μs。 MG(0.01)在pH值上的分辨率比FLG(0.1)高一个数量级。原因是缺陷较少,MG更有可能吸附测得的分子和离子,并且分子和离子会改变传输性质。当pH值介于7和8之间时,MG的输出灵敏​​度为34.5%至57.4%,而当pH = 7时,FLG的灵敏度为4.75%。传感器的制造结合了传统的硅技术和柔性电子技术,为开发基于石墨烯的电解质气体传感器甚至生物传感器提供了简便的方法。

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