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Performance of pyrolyzed photoresist carbon films in a microchip capillary electrophoresis device with sinusoidal voltammetric detection

机译:具有正弦伏安检测的微芯片毛细管电泳装置中热解光刻胶碳膜的性能

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Pyrolyzed photoresist films (PPF) are introduced as planar carbon electrodes in a PDMS-quartz hybrid microchip device. The utility of PPF in electroanalytical applications is demonstrated by the separation and detection of various neurotransmitters. PPF is found to form a stable, low-capacitance, durable layer on quartz, which can then be used in conjunction with a microchip capillary electrophoretic device. Sinusoidal voltammetric detection at PPF electrodes is shown to be very sensitive, with a detection limit (S/N=3) of 100 nM for dopamine, corresponding to a mass detection limit (S/N=3) of 2 amol. The selectivity of analysis in the frequency domain is demonstrated by isolating each individual signal in a pair of analytes that are chromatographically unresolved. Effectively decoupling the electrophoresis and electrochemical systems allows the electrodes to be placed just inside the separation channel, which results in efficient separations (80000-100000 plates/m). [References: 42]
机译:将热解光致抗蚀剂薄膜(PPF)作为平面碳电极引入PDMS-石英混合微芯片器件中。 PPF在电分析应用中的实用性通过各种神经递质的分离和检测得到证明。发现PPF在石英上形成稳定的,低电容的耐用层,然后可将其与微芯片毛细管电泳设备结合使用。 PPF电极上的正弦伏安检测显示非常灵敏,多巴胺的检测限(S / N = 3)为100 nM,对应于2 amol的质量检测限(S / N = 3)。通过在色谱上未分离的一对分析物中分离每个信号,证明了在频域中分析的选择性。有效地将电泳和电化学系统解耦,可以将电极放置在分离通道的内部,从而实现高效分离(80000-100000板/米)。 [参考:42]

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