Comparative testing of Ag/Au/Pt graphene electromodified electrodes in electrochemical detection of tetracycline-emerging pollutant

S. Negrea, L. A. Diaconu, V. Nicorescu, D. Neidoni, A. Baciu, Claudia Licurici, F. Manea
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Abstract

This study aimed to obtain new electrochemically modified electrodes with graphene and Au, Pt, Ag particles considering graphite (GP) and glassy carbon (GC) substrate by applying the chronoamperometry technique to develop the detection protocol of tetracycline (TC) considered as an emerging pollutant in water, using cyclic voltammetry (CV) technique. The graphite-based substrate used for Ag/ Au/ Pt electrodeposition led to the electrode compositions on which TC oxidation process was not diffusion-controlled and as consequence, TC detection failed. TC detection protocols were developed for all Ag/Au /Pt electrodeposited GC and GCGP electrodes. Better limits of TC detection was achieved for Ag electrodeposited on GC-GP at the cathodic potential of 0.460 V/SCE.
Ag/Au/Pt石墨烯修饰电极在四环素新兴污染物电化学检测中的对比测试
本研究以石墨(GP)和玻璃碳(GC)为衬底,采用时温法技术,制备了石墨烯和Au、Pt、Ag粒子的电化学修饰电极,并采用循环伏安法(CV)建立了水中新兴污染物四环素(TC)的检测方案。Ag/ Au/ Pt电沉积使用的石墨基衬底导致电极成分上的TC氧化过程不受扩散控制,从而导致TC检测失败。开发了所有Ag/Au /Pt电沉积GC和GCGP电极的TC检测方案。在阴极电位为0.460 V/SCE时,GC-GP上电沉积的银具有较好的TC检测限。
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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