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首页> 外文期刊>Analytical methods >Graphene layer modified glassy carbon electrode for the determination of norepinephrine and theophylline in pharmaceutical formulations
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Graphene layer modified glassy carbon electrode for the determination of norepinephrine and theophylline in pharmaceutical formulations

机译:石墨烯层修饰玻碳电极测定药物制剂中去甲肾上腺素和茶碱的含量

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In this paper, electrochemical determination of norepinephrine (NE) and theophylline (TP) was demonstrated using an electrochemically reduced graphene oxide (ERGO) modified glassy carbon electrode (GCE). The ERGO was fabricated on a GCE by self-assembling graphene oxide (GO) on 1,6-hexadiamine (HDA) which was preassembled on the GCE, followed by the electrochemical reduction of GO. SEM imaging shows a flake-like structure for the GO modified substrate, whereas an aggregated structure was observed for the ERGO modified substrate. Then, the ERGO modified GCE was used for the determination of NE and TP. It was found that the ERGO modified electrode not only enhanced the oxidation currents of NE and TP, but also prevented a surface fouling effect caused by their oxidation products. In contrast, the oxidation currents of both NE and TP were low at bare and GO modified GCEs and very importantly, their oxidation signals were not stable due to the surface fouling effect. The ERGO modified GCE separated the oxidation signals of NE and TP in a mixture and was hence used for their simultaneous determination. Selective determination of NE in the presence of a higher concentration of TP was also achieved at an ERGO modified GCE. Using amperometry, a detection of 40 nM NE and 50 nM TP was obtained. The current responses of NE and TP were increased linearly while increasing their concentrations from 4 × 10~(-8) to 1 × 10~(-4) M and 5 × 10~(-8) to 4 × 10~(-5) M and the detection limits were found to be 8.4 × 10~(-10) M and 2.9 × 10~(-9) M (S/N = 3), respectively. The practical application of the present modified electrode was demonstrated by measuring the amounts of NE and TP in injections and tablets.
机译:在本文中,使用电化学还原的氧化石墨烯(ERGO)修饰的玻璃碳电极(GCE)证明了去甲肾上腺素(NE)和茶碱(TP)的电化学测定。 ERGO是通过在GCE上预组装的1,6-己二胺(HDA)上的自组装氧化石墨烯(GO),然后电化学还原GO来在ER上制造的。 SEM成像显示GO改性基材呈片状结构,而ERGO改性基材则观察到聚集结构。然后,将ERGO修饰的GCE用于测定NE和TP。已经发现,ERGO修饰的电极不仅增强了NE和TP的氧化电流,而且还防止了由它们的氧化产物引起的表面结垢作用。相反,在裸露的和经GO修饰的GCE上,NE和TP的氧化电流都低,而且非常重要的是,由于表面结垢效应,它们的氧化信号不稳定。 ERGO修饰的GCE分离了混合物中NE和TP的氧化信号,因此被用于同时测定。在ERGO修饰的GCE上,在较高浓度的TP存在下对NE的选择性测定也得以实现。使用电流分析法检测到40 nM NE和50 nM TP。 NE和TP的电流响应线性增加,浓度分别从4×10〜(-8)增至1×10〜(-4)M和5×10〜(-8)增至4×10〜(-5 )M和检出限分别为8.4×10〜(-10)M和2.9×10〜(-9)M(S / N = 3)。通过测量注射剂和片剂中NE和TP的量证明了本发明修饰电极的实际应用。

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