Novel Gate Electrode Design for Flexible Planar Electrolyte-Gated Field-Effect Transistor-Based Sensors for Real-Time Ammonium Detection

M. Petrelli, Bajramshahe Shkodra, M. C. Angeli, Alessandra Scarton, S. Pogliaghi, R. Biasi, P. Lugli, L. Petti
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引用次数: 3

Abstract

In this work, the comparison between two different gate electrode layouts (square-shaped and U-shaped, designed with the same area) for flexible and planar electrolyte-gated field-effect transistor-based sensors for ammonium detection is reported. Spray-deposited semiconducting carbon nanotubes were employed as active material, while the functionalization was achieved by means of an ion-selective membrane, based on the nonactin ionophore. The devices fabricated with the two designs were compared in terms of the response towards different concentrations of ammonium. Both showed excellent linear detection for ammonium in the physiological range of interest from 0.1 to 10 mM. The devices with the square-shaped gate achieved average sensitivity of 1.270 µA/decade (relative standard deviation 70.55%), while the devices with the novel U-shaped gate showed an improved sensitivity of 2.669 µA/decade (relative standard deviation 31.46%).
基于柔性平面电解门控场效应晶体管的新型栅极实时检测传感器
在这项工作中,比较了两种不同的栅极布局(方形和u形,设计具有相同的面积),用于柔性和平面电解质门控场效应晶体管传感器的铵检测。采用喷雾沉积的半导体碳纳米管作为活性材料,而基于非动蛋白离子载体的离子选择膜实现功能化。比较了两种设计的装置对不同浓度铵离子的响应。两种器件在0.1 ~ 10 mM的生理范围内均表现出良好的线性检测效果。方形栅极器件的平均灵敏度为1.270µA/decade(相对标准偏差为70.55%),而新型u形栅极器件的灵敏度为2.669µA/decade(相对标准偏差为31.46%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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