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首页> 外文期刊>Analytical chemistry >A microchip electrophoresis device with integrated electrochemical detection: A direct comparison of constant potential amperometry and sinusoidal voltammetry
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A microchip electrophoresis device with integrated electrochemical detection: A direct comparison of constant potential amperometry and sinusoidal voltammetry

机译:集成电化学检测的微芯片电泳装置:恒电位安培法和正弦伏安法的直接比较

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摘要

A microchip electrophoresis system with integrated electrochemical detection is described in this work. The hybrid device utilizes poly(dimethylsiloxane) as the electrophoresis channel substrate and a planar gold electrode lithographically fabricated onto a glass slide for electrochemical detection. The system is characterized by the separation and detection of various neurotransmitters. The gold working electrode is placed just inside the separation channel without adverse effects on the detection sensitivity, due to the electrical decoupling of the detection and electrophoresis systems. The close proximity of the working electrode to the exit of the separation channel results in symmetric peak shapes and efficient separations (50 000- 100 000 plates/m). A direct comparison between the frequency-based electrochemical technique, sinusoidal voltammetry, and the more commonly used constant potential (DC) amperometry is made. Sinusoidal voltammetry is found to be roughly an order of magnitude more sensitive than DC amperometry, with calculated mass detection limits (S/N = 3) of 12 amol and 15 amol for dopamine and isoproterenol, respectively. [References: 45]
机译:这项工作描述了具有集成电化学检测的微芯片电泳系统。该混合装置利用聚二甲基硅氧烷作为电泳通道基板,并将平板金电极光刻印刷在载玻片上以进行电化学检测。该系统的特点是分离和检测各种神经递质。由于检测和电泳系统的电气去耦,金工作电极正好放置在分离通道内,而不会对检测灵敏度产生不利影响。工作电极与分离通道的出口非常接近,导致对称的峰形和有效的分离(50000-100000板/ m)。在基于频率的电化学技术,正弦伏安法和更常用的恒电位(DC)安培法之间进行了直接比较。发现正弦伏安法比直流安培法灵敏大约一个数量级,计算出的多巴胺和异丙肾上腺素的质量检测极限(S / N = 3)分别为12 amol和15 amol。 [参考:45]

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