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Development of a novel electrochemical surface plasmon resonance instrument based on a mini three electrode flow cell

机译:基于微型三电极流通池的新型电化学表面等离子体激元共振仪的研制

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The construction and performance of a novel electrochemical (EC) surface plasmon resonance (SPR) instrument based on a mini three electrode flow cell that was designed and manufactured by MEMS technology is described. The working electrode is 50nm gold and counter and reference electrodes,made of Au and Ag/AgCl separately, are 0.6 mm in diameter. The flow channel is made of polydimethylsiloxane (PDMS) with 1mm in width, 200μm in depth, 5μL in volume. The process for activating and modifying the working electrode is given by the real-time SPR detection. The Cyclic voltammetry (CV) and SPR detection are conducted simultaneously in potassium ferricyanide solution system. It is proved that the signal of redox reaction and the change of refractive index have a well correlation by the potential sweep experiment. Four kinds of concentration of potassium ferricyanide are analyzed and the peak oxidizing current, obtained from the curve, is proportional to the respective concentration of the sample. The EC-SPR experiment is also carried out in CuSO4 system and the results is similar to potassium ferricyanide.
机译:描述了一种基于微型三电极流通池的新型电化学(EC)表面等离子体共振(SPR)仪器的构造和性能,该仪器是由MEMS技术设计和制造的。工作电极为50nm金,对电极和参比电极分别由Au和Ag / AgCl制成,直径为0.6 mm。流动通道由宽度为1mm,深度为200μm,体积为5μL的聚二甲基硅氧烷(PDMS)制成。激活和修改工作电极的过程由实时SPR检测给出。在铁氰化钾溶液系统中同时进行循环伏安法(CV)和SPR检测。电位扫描实验证明氧化还原反应的信号与折射率的变化具有良好的相关性。分析了四种浓度的铁氰化钾,从曲线获得的峰值氧化电流与样品各自的浓度成正比。在CuSO4体系中也进行了EC-SPR实验,结果类似于铁氰化钾。

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