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Nanodiamond based surface modified screen-printed electrodes for the simultaneous voltammetric determination of dopamine and uric acid

机译:纳米金刚石表面修饰的丝网印刷电极用于同时伏安法测定多巴胺和尿酸

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摘要

The electroanalytical detection of the neurotransmitter dopamine (DA) in the presence of uric acid (UA) is explored for the first time using commercially procured nanodiamonds (NDs). These are electrically wired via surface modification upon screen-printed graphite macroelectrodes (SPEs). The surface coverage of the NDs on the SPEs was explored in order to optimize electroanalytical outputs to result in well-resolved signals and in low limits of detection. The (electro)analytical outputs are observed to be more sensitive than those achieved at bare (unmodified) SPEs. Such responses, previously reported in the academic literature have been reported to be electrocatalytic and have been previously attributed to the presence of surface sp2 carbon and oxygenated species on the surface of the NDs. However, XPS analysis reveals the commercial NDs to be solely composed of nonconductive sp3 carbon. The lowegligible electroconductivity of the NDs was further confirmed when ND paste electrodes were fabricated and found to exhibit no electrochemical activity. The electroanalytical enhancement, when using NDs electronically wired upon SPEs, is attributed not to the NDs themselves being electrocatalytic, as reported previously, but rather changes in mass transport where the inert NDs block the underlying electroactive SPEs and create a random array of graphite microelectrodes. The electrode was applied to simultaneous sensing of DA and UA at pH 5.5. Figures of merit include (a) low working potentials of around 0.27 and 0.35 V (vs. Ag/AgCl); and (b) detection limits of 5.7 × 10−7 and 8.9 × 10−7 M for DA and UA, respectively. >Graphical abstractThe electroanalytical enhancement of screen-printed electrodes modified with inerton-conductive nanodiamonds is due to a change in mass transfer where the inert nanodiamonds facilitate the production of a random microelectrode array.
机译:首次使用市售纳米金刚石(NDs)探索了在尿酸(UA)存在下神经递质多巴胺(DA)的电分析检测。这些通过丝网印刷的石墨大电极(SPE)上的表面改性而电连接。为了优化电分析输出以产生良好分辨的信号并降低检测限,探索了SPE上ND的表面覆盖范围。观察到(电)分析输出比在裸(未修改)SPE上获得的输出更敏感。先前已在学术文献中报道的这种反应已被报道为电催化的,并且先前已归因于NDs表面上存在表面sp 2 碳和氧化物种。但是,XPS分析表明,商用ND仅由不导电的sp 3 碳组成。当制造ND糊状电极时,进一步证实了ND的低/可忽略的导电性,发现其不表现出电化学活性。如前所述,当使用通过电子方式连接在SPE上的ND时,电分析的增强不是归因于ND本身是电催化的,而是质量传输的变化,惰性ND会阻挡下面的电活性SPE并形成石墨微电极的随机阵列。该电极用于在pH值为5.5时同时感测DA和UA。优点包括(a)0.27和0.35V左右的低工作电势(vs.Ag/AgCl); (b)DA和UA的检出限分别为5.7×10 -7 和8.9×10 −7 M。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!-图/图形|无花果/替代品/图形模式=“锚定” m1-> <!-标题a7->用惰性/非导电纳米金刚石改性的丝网印刷电极的电分析增强是由于质量的变化惰性纳米金刚石促进了无规微电极阵列的产生。

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