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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Electrochemical dopamine sensor using a nanoporous gold microelectrode: a proof-of-concept study for the detection of dopamine release by scanning electrochemical microscopy
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Electrochemical dopamine sensor using a nanoporous gold microelectrode: a proof-of-concept study for the detection of dopamine release by scanning electrochemical microscopy

机译:电化学多巴胺传感器使用纳米孔金微电极:通过扫描电化学显微镜检测多巴胺释放的概念证据研究

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摘要

Nanoporous gold (NPG) structures were prepared on the surface of a gold microelectrode (Au-mu E) by an anodization-reduction method. Cyclic voltammetry and field emission scanning electron microscopy were used to study the electrochemical properties and the morphology of the nanostructured film. Voltammetry showed an improved sensitivity for dopamine (DA) oxidation at this microelectrode when compared to a bare gold microelectrode, with a peak near 0.2 V (vs. Ag/AgCl) at a scan rate of 0.1 V s(-1). This is due to the increased surface area and roughness. Square wave voltammetry shows a response that is linear in the 0.1-10 mu mol L-1 DA concentration range, with a 30 nmol L-1 detection limit and a sensitivity of 1.18 mA (mu mol L-1)(-1) cm(-2). The sensor is not interfered by ascorbic acid. The reproducibility, repeatability, long-term stability and real sample analysis (spiked urine) were assessed, and acceptable performance was achieved. The "proof-of-concept" detection of dopamine release was demonstrated by using scanning electrochemical microscopy (SECM) with the aim of future applications for single cell analysis.
机译:通过阳极氧化还原方法在金微电极(Au-Mu E)的表面上制备纳米孔金(NPG)结构。循环伏安法和场发射扫描电子显微镜用于研究电化学性质和纳米结构薄膜的形态。与裸金微电极相比,伏安法显示出在该微电极上的多巴胺(DA)氧化的灵敏度,其峰值为0.1Vs(-1)的扫描速率。这是由于表面积增加和粗糙度。方波伏安法显示了0.1-10μmol1-1da浓度范围内线性的响应,具有30nmol L-1检测极限,灵敏度为1.18 mA(mu mol l-1)( - 1)cm (-2)。传感器不受抗坏血酸干扰。评估重现性,可重复性,长期稳定性和实际样品分析(尖刺尿液),实现了可接受的性能。通过使用扫描电化学显微镜(SECM)来证明“概念证据”检测多巴胺释放的检测,目的是未来应用单细胞分析的应用。

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