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Electrochemical Performance of Porous Diamond-like Carbon Electrodes for Sensing Hormones, Neurotransmitters, and Endocrine Disruptors

机译:多孔类金刚石碳电极对激素,神经递质和内分泌干扰物的电化学性能

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摘要

Porous diamond-like carbon (DLC) electrodes have been prepared, and their electrochemical performance was explored. For electrode preparation, a thin DLC film was deposited onto a densely packed forest of highly porous, vertically aligned multiwalled carbon nanotubes (VACNT). DLC deposition caused the tips of the carbon nanotubes to clump together to form a microstructured surface with an enlarged surface area. DLC:VACNT electrodes show fast charge transfer, which is promising for several electrochemical applications, including electroanalysis. DLC:VACNT electrodes were applied to the determination of targeted molecules such as dopamine (DA) and epinephrine (EP), which are neurotransmitters/hormones, and acetaminophen (AC), an endocrine disruptor. Using simple and low-cost techniques, such as cyclic voltammetry, analytical curves in the concentration range from 10 to 100 mu mol L-1 were obtained and excellent analytical parameters achieved, including high analytical sensitivity, good response stability, and low limits of detection of 2.9, 4.5, and 2.3 mu mol L-1 for DA, EP, and AC, respectively.
机译:制备了多孔类金刚石碳(DLC)电极,并探讨了其电化学性能。对于电极制备,将薄DLC膜沉积在高度多孔,垂直排列的多壁碳纳米管(VACNT)的密集堆积的森林中。 DLC沉积导致碳纳米管的尖端结块在一起,形成表面积增大的微结构化表面。 DLC:VACNT电极显示出快速的电荷转移,这在包括电化学分析在内的多种电化学应用中很有希望。 DLC:VACNT电极用于确定目标分子,例如神经递质/激素的多巴胺(DA)和肾上腺素(EP)和内分泌干扰物对乙酰氨基酚(AC)。使用简单且低成本的技术(例如循环伏安法),可得到浓度范围为10至100μmol L-1的分析曲线,并获得了出色的分析参数,包括高分析灵敏度,良好的响应稳定性和低检测限DA,EP和AC的L-1分别为2.9、4.5和2.3μmolL-1。

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