首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >A solid-state sensor based on poly(2,4,6-triaminopyrimidine) grafted with electrochemically reduced graphene oxide: Fabrication, characterization, kinetics and potential analysis on ephedrine
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A solid-state sensor based on poly(2,4,6-triaminopyrimidine) grafted with electrochemically reduced graphene oxide: Fabrication, characterization, kinetics and potential analysis on ephedrine

机译:基于聚(2,4,6-三氨基嘧啶)的固态传感器接枝电化学减少的石墨烯氧化物:制造,表征,动力学和麻黄碱的潜在分析

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摘要

A catalytic surface was fabricated by incorporation of electrochemically reduced graphene oxide (rGO) on poly (2,4,6-triaminopyrimidine) (PTAP) film modified glassy carbon electrode. The surface materials of the constructed electrode (rGO.PTAP/GCE) were characterized by means of electrochemical and surface scanning techniques including Cyclic Voltammetry (CV), Electrochemical Impedance Spectroscopy (EIS) and X-ray Photoelectrons Spectroscopy (XPS). Fourier Transform Infrared Spectroscopy (FTIR) and Scanning Electron Microscopy (SEM) were carried out to identify the preparation of the graphene oxide (GO). The heterogeneous rate constant (k(s) = 0.149 cm S-1) of the fabricated sensor was evaluated by Nicholson method. The synergistic effect of surface materials promotes the catalytic efficiency of the developed sensor for the detection of ephedrine (EPH) in pharmaceutical samples where the detection limit (DL3 sigma) of EPH was 1.8 mu M (297 ppb). The diffusion coefficient of ephedrine (2.55 x 10(-5) cm(2).S-1) was also evaluated using theoretical electrochemical approach. The analytical performance of the sensor was successfully applied for real drug sample with acceptable analytical recovery percentage.
机译:通过在聚(2,4,4,6-三胺嘧啶)(PTAP)膜改性玻璃电极上掺入电化学还原的石墨烯(RGO)制备催化表面。通过电化学和表面扫描技术表征构造电极(RGO.PTAP / GCE)的表面材料,包括循环伏安法(CV),电化学阻抗光谱(EIS)和X射线光电子谱(XPS)。进行傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)以鉴定石墨烯氧化物的制备(GO)。通过Nicholson方法评估制造传感器的非均相率常数(K(S)= 0.149cm S-1)。表面材料的协同效应促进发达传感器的催化效率,用于检测药物样品中的麻黄碱(EPH),其中Eph的检测限(DL3 Sigma)为1.8 mu m(297ppb)。还使用理论电化学方法评估麻黄碱的扩散系数(2.55×10(-5)cm(2)厘米cm(2).s-1)。传感器的分析性能以可接受的分析恢复百分比成功应用于真实药物样品。

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