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Carbon Quantum Dot-Modified Carbon Paste Electrode-BasedSensor for Selective and Sensitive Determination of Adrenaline

机译:基于碳量子点修饰的碳糊电极选择性和敏感测定肾上腺素的传感器

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摘要

A carbon quantum dot-based carbon paste electrode was fabricated and used for the determination of adrenaline (AD) at the nanomolar level. This fabricated electrode exhibited tremendous electrocatalytic activity for the oxidation of adrenaline in supporting electrolyte (PBS of pH 7.4). Scan rate variation studies with the modified electrode revealed that the overall electrode process was controlled by a diffusion process. A lower detection limit of 6 nM was achieved by chronoamperometry. Interference by biological molecules such as serotonin (5-HT) and ascorbic acid (AA) in the electrochemical oxidation of AD on the fabricated electrode was tested. It was observed that with the modified electrode, the selective determination of AD was possible. Further, with the fabricated electrode, simultaneous analysis of AA, AD, and 5-HT was performed, and it was observed that the overlapped peaks of these analytes on the naked electrode were well resolved into three peaks on the modified electrode. Along with decent sensitivity and selectivity, the electrode also showed higher stability and antifouling nature.The real-time application of the projected scheme was proven by employingthe said electrode for adrenaline in adrenaline bitartrate injections.
机译:制备了基于碳量子点的碳糊电极,并将其用于纳摩尔水平的肾上腺素(AD)的测定。这种制成的电极对支持电解质(pH 7.4的PBS)中肾上腺素的氧化表现出极大的电催化活性。修饰电极的扫描速率变化研究表明,整个电极过程受扩散过程控制。通过计时电流法实现了6 nM的下限检测。测试了5-羟色胺(5-HT)和抗坏血酸(AA)等生物分子对AD在制成的电极上的电化学氧化的干扰。观察到,使用修饰的电极,可以选择性地确定AD。此外,对于制成的电极,同时进行了AA,AD和5-HT的分析,并且观察到这些分析物在裸电极上的重叠峰被很好地解析为修饰电极上的三个峰。除了合适的灵敏度和选择性外,电极还显示出更高的稳定性和防污性。通过应用证明了该方案的实时应用。所述肾上腺素酒石酸氢盐注射液中的肾上腺素电极。

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