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An Electrochemical pH Sensor Based on the Amino-Functionalized Graphene and Polyaniline Composite Film

机译:基于氨基官能化石墨烯和聚苯胺复合膜的电化学pH传感器

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摘要

Conventional glass-based pH sensors are usually fragile and space consuming. Herein, a miniature electrochemical pH sensor based on amino-functionalized graphene fragments and polyaniline (NH2-G/PANI) composite film is developed via simply one-pot electrochemical polymerization on the ITO-coated glass substrates. Cyclic Voltammetry (CV), Scanning Electron Microscopy (SEM), Transmission electron microscopy (TEM), X-ray Photoelectron Spectroscopy (XPS), and Raman Spectra are involved to confirm the successful synthesis and to characterize the properties of the NH2-G/PANI composite film. The developed electrochemical pH sensor presents fast response, high sensitivity (51.1 mV/pH) and wide detection range when applied to PBS solutions of pH values from 1 to 11. The robust reproducibility and good stability of the developed pH sensors are investigated as well. Compared to the conventional glass-based pH meters, the NH2-G/PANI composite film-based pH sensor could be a promising contender for the flexible and miniaturized pH-sensing devices.
机译:常规的基于玻璃的pH传感器通常易碎且占用空间。本文中,通过简单的一锅式电化学聚合在涂有ITO的玻璃基板上开发了一种基于氨基官能化石墨烯片段和聚苯胺(NH2-G / PANI)复合膜的微型电化学pH传感器。涉及循环伏安法(CV),扫描电子显微镜(SEM),透射电子显微镜(TEM),X射线光电子能谱(XPS)和拉曼光谱,以确认合成成功并表征NH2-G / PANI复合膜。当应用于pH值为1到11的PBS溶液时,开发的电化学pH传感器具有快速响应,高灵敏度(51.1 mV / pH)和宽检测范围的特点。还对开发的pH传感器的鲁棒再现性和良好稳定性进行了研究。与传统的基于玻璃的pH计相比,基于NH2-G / PANI复合膜的pH传感器可以成为灵活而小型化的pH传感设备的有力竞争者。

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